10107213
JFQFQPCZ
https://www.phys.ens.psl.eu/~nascimbene/publications/custom_numbered0.csl
50
date
title
305
https://quantumgases-pariscdf.fr/wp-content/plugins/zotpress/
%7B%22status%22%3A%22success%22%2C%22updateneeded%22%3Afalse%2C%22instance%22%3A%22zotpress-c7fd9e016c9fa4736227ac31f7296ec8%22%2C%22meta%22%3A%7B%22request_last%22%3A0%2C%22request_next%22%3A0%2C%22used_cache%22%3Atrue%7D%2C%22data%22%3A%5B%7B%22key%22%3A%22UYFR2LG5%22%2C%22library%22%3A%7B%22id%22%3A10107213%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Bouhiron%20et%20al.%22%2C%22parsedDate%22%3A%222024-04-12%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%201.35%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%20style%3D%5C%22clear%3A%20left%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-left-margin%5C%22%20style%3D%5C%22float%3A%20left%3B%20padding-right%3A%200.5em%3B%20text-align%3A%20right%3B%20width%3A%201em%3B%5C%22%3E1.%3C%5C%2Fdiv%3E%3Cdiv%20class%3D%5C%22csl-right-inline%5C%22%20style%3D%5C%22margin%3A%200%20.4em%200%201.5em%3B%5C%22%3EJ.-B.%20Bouhiron%2C%20A.%20Fabre%2C%20Q.%20Liu%2C%20Q.%20Redon%2C%20N.%20Mittal%2C%20T.%20Satoor%2C%20R.%20Lopes%2C%20and%20S.%20Nascimbene%2C%20%3Ci%3E%3Ca%20href%3D%27https%3A%5C%2F%5C%2Fwww.science.org%5C%2Fdoi%5C%2F10.1126%5C%2Fscience.adf8459%27%3ERealization%20of%20an%20atomic%20quantum%20Hall%20system%20in%20four%20dimensions%3C%5C%2Fa%3E%3C%5C%2Fi%3E%2C%20ArXiv%3A2210.06322%2C%20Science%20%3Cb%3E384%3C%5C%2Fb%3E%2C%20223%20%282024%29.%3C%5C%2Fdiv%3E%5Cn%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Realization%20of%20an%20atomic%20quantum%20Hall%20system%20in%20four%20dimensions%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Baptiste%22%2C%22lastName%22%3A%22Bouhiron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Aur%5Cu00e9lien%22%2C%22lastName%22%3A%22Fabre%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Qi%22%2C%22lastName%22%3A%22Liu%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Quentin%22%2C%22lastName%22%3A%22Redon%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Nehal%22%2C%22lastName%22%3A%22Mittal%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Tanish%22%2C%22lastName%22%3A%22Satoor%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Raphael%22%2C%22lastName%22%3A%22Lopes%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Sylvain%22%2C%22lastName%22%3A%22Nascimbene%22%7D%5D%2C%22abstractNote%22%3A%22Modern%20condensed%20matter%20physics%20relies%20on%20the%20concept%20of%20topology%20to%20classify%20matter%2C%20from%20quantum%20Hall%20systems%20to%20topological%20insulators.%20Engineered%20systems%2C%20benefiting%20from%20synthetic%20dimensions%2C%20can%20potentially%20give%20access%20to%20topological%20states%20predicted%20in%20dimensions%20%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%20%20D%20%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%20%20%3E%203.%20We%20report%20the%20realization%20of%20an%20atomic%20quantum%20Hall%20system%20evolving%20in%20four%20dimensions%20%284D%29%2C%20with%20two%20spatial%20dimensions%20and%20two%20synthetic%20ones%20encoded%20in%20the%20large%20spin%20of%20dysprosium%20atoms.%20We%20measure%20the%20nontrivial%20topological%20index%20of%20the%20ground%20band%20through%20a%20full%20characterization%20of%20the%20nonlinear%20electromagnetic%20response%20and%20observe%20the%20associated%20anisotropic%20hyperedge%20modes.%20We%20also%20excite%20nonplanar%20cyclotron%20motion%2C%20in%20contrast%20to%20the%20planar%20orbits%20in%20%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%20%20D%20%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%20%20%5Cu2264%203.%20Our%20work%20may%20enable%20the%20investigation%20of%20strongly%20correlated%20topological%20liquids%20in%204D%2C%20generalizing%20fractional%20quantum%20Hall%20states.%20%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%20%5Cn%20%20%20%20%20%20%20%20%20%20%2C%20%20%5Cn%20%20%20%20%20%20%20%20%20%20%20%20Editor%5Cu2019s%20summary%20%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%20%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%20%20The%20Hall%20effect%2C%20the%20appearance%20of%20a%20potential%20difference%20transverse%20to%20current%20flow%20in%20the%20presence%20of%20an%20external%20magnetic%20field%2C%20is%20typically%20associated%20with%20two-dimensional%20conductors.%20In%20the%20classical%20picture%2C%20electrons%20in%20these%20systems%20follow%20planar%20circular%20orbits%20because%20of%20the%20Lorentz%20force%20exerted%20by%20the%20perpendicular%20field.%20Bouhiron%20%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%20%20et%20al%20%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%20%20.%20extended%20this%20concept%20to%20four%20dimensions%20using%20a%20system%20of%20cold%20dysprosium%20atoms%3B%20two%20of%20the%20dimensions%20are%20spatial%20and%20two%20are%20so-called%20synthetic%20dimensions%20corresponding%20to%20internal%20states%20of%20the%20atoms.%20In%20keeping%20with%20theoretical%20predictions%2C%20the%20system%20exhibits%20nontrivial%20topological%20properties%20and%20features%20nonplanar%20cyclotron%20orbits.%20%5Cu2014Jelena%20Stajic%22%2C%22date%22%3A%222024-04-12%22%2C%22language%22%3A%22en%22%2C%22DOI%22%3A%2210.1126%5C%2Fscience.adf8459%22%2C%22ISSN%22%3A%220036-8075%2C%201095-9203%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fwww.science.org%5C%2Fdoi%5C%2F10.1126%5C%2Fscience.adf8459%22%2C%22collections%22%3A%5B%22JFQFQPCZ%22%2C%22SMTHG4E4%22%2C%22SIP3FM63%22%2C%22IBRWV7R7%22%5D%2C%22dateModified%22%3A%222024-04-21T17%3A18%3A53Z%22%7D%7D%2C%7B%22key%22%3A%22MQ5Z75JC%22%2C%22library%22%3A%7B%22id%22%3A10107213%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Fabre%20and%20Nascimbene%22%2C%22parsedDate%22%3A%222024-03%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%201.35%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%20style%3D%5C%22clear%3A%20left%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-left-margin%5C%22%20style%3D%5C%22float%3A%20left%3B%20padding-right%3A%200.5em%3B%20text-align%3A%20right%3B%20width%3A%201em%3B%5C%22%3E1.%3C%5C%2Fdiv%3E%3Cdiv%20class%3D%5C%22csl-right-inline%5C%22%20style%3D%5C%22margin%3A%200%20.4em%200%201.5em%3B%5C%22%3EA.%20Fabre%20and%20S.%20Nascimbene%2C%20%3Ci%3E%3Ca%20href%3D%27https%3A%5C%2F%5C%2Fdx.doi.org%5C%2F10.1209%5C%2F0295-5075%5C%2Fad2ff6%27%3EAtomic%20topological%20quantum%20matter%20using%20synthetic%20dimensions%3C%5C%2Fa%3E%3C%5C%2Fi%3E%2C%20EPL%20%3Cb%3E145%3C%5C%2Fb%3E%2C%2065001%20%282024%29.%3C%5C%2Fdiv%3E%5Cn%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Atomic%20topological%20quantum%20matter%20using%20synthetic%20dimensions%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22A.%22%2C%22lastName%22%3A%22Fabre%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22S.%22%2C%22lastName%22%3A%22Nascimbene%22%7D%5D%2C%22abstractNote%22%3A%22The%20realization%20of%20topological%20states%20of%20matter%20in%20ultracold%20atomic%20gases%20is%20currently%20the%20subject%20of%20intense%20experimental%20activity.%20Using%20a%20synthetic%20dimension%2C%20encoded%20in%20an%20internal%20or%20external%20degree%20of%20freedom%20that%20differs%20from%20spatial%20position%2C%20can%20greatly%20simplify%20the%20simulation%20of%20gauge%20fields%20and%20give%20access%20to%20exotic%20topological%20states.%20We%20review%20here%20recent%20advances%20in%20the%20field%20and%20discuss%20future%20perspectives.%22%2C%22date%22%3A%222024-03%22%2C%22language%22%3A%22en%22%2C%22DOI%22%3A%2210.1209%5C%2F0295-5075%5C%2Fad2ff6%22%2C%22ISSN%22%3A%220295-5075%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fdx.doi.org%5C%2F10.1209%5C%2F0295-5075%5C%2Fad2ff6%22%2C%22collections%22%3A%5B%22JFQFQPCZ%22%2C%22SIP3FM63%22%2C%22IBRWV7R7%22%5D%2C%22dateModified%22%3A%222024-03-27T09%3A18%3A57Z%22%7D%7D%2C%7B%22key%22%3A%22BIDU4JLL%22%2C%22library%22%3A%7B%22id%22%3A10107213%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Nardin%20et%20al.%22%2C%22parsedDate%22%3A%222023-12-11%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%201.35%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%20style%3D%5C%22clear%3A%20left%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-left-margin%5C%22%20style%3D%5C%22float%3A%20left%3B%20padding-right%3A%200.5em%3B%20text-align%3A%20right%3B%20width%3A%201em%3B%5C%22%3E1.%3C%5C%2Fdiv%3E%3Cdiv%20class%3D%5C%22csl-right-inline%5C%22%20style%3D%5C%22margin%3A%200%20.4em%200%201.5em%3B%5C%22%3EA.%20Nardin%2C%20R.%20Lopes%2C%20M.%20Rizzi%2C%20L.%20Mazza%2C%20and%20S.%20Nascimbene%2C%20%3Ci%3E%3Ca%20href%3D%27http%3A%5C%2F%5C%2Farxiv.org%5C%2Fabs%5C%2F2312.07604%27%3EBisognano-Wichmann%20Hamiltonian%20for%20the%20entanglement%20spectroscopy%20of%20fractional%20quantum%20Hall%20states%3C%5C%2Fa%3E%3C%5C%2Fi%3E%2C%20ArXiv%3A2312.07604%20%282023%29.%3C%5C%2Fdiv%3E%5Cn%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Bisognano-Wichmann%20Hamiltonian%20for%20the%20entanglement%20spectroscopy%20of%20fractional%20quantum%20Hall%20states%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22A.%22%2C%22lastName%22%3A%22Nardin%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22R.%22%2C%22lastName%22%3A%22Lopes%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22M.%22%2C%22lastName%22%3A%22Rizzi%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22L.%22%2C%22lastName%22%3A%22Mazza%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22S.%22%2C%22lastName%22%3A%22Nascimbene%22%7D%5D%2C%22abstractNote%22%3A%22We%20study%20the%20Bisognano-Wichmann%20Hamiltonian%20for%20fractional%20quantum%20Hall%20states%20defined%20on%20a%20sphere%20and%20explore%20its%20relationship%20with%20the%20entanglement%20Hamiltonian%20associated%20to%20the%20state.%20We%20present%20results%20for%20several%20examples%2C%20namely%20the%20bosonic%20Laughlin%20state%20stabilized%20by%20contact%20two-body%20interactions%20and%20the%20bosonic%20Moore-Read%20state%20by%20either%20three-%20or%20two-body%20interactions.%20Our%20findings%20demonstrate%20that%20the%20Bisognano-Wichmann%20Hamiltonian%20provides%20a%20reliable%20approximation%20of%20the%20entanglement%20Hamiltonian%20as%20a%20fully-local%20operator%20that%20can%20be%20written%20without%20any%20prior%20knowledge%20of%20the%20specific%20state%20under%20consideration.%22%2C%22date%22%3A%222023-12-11%22%2C%22language%22%3A%22%22%2C%22DOI%22%3A%22%22%2C%22ISSN%22%3A%22%22%2C%22url%22%3A%22http%3A%5C%2F%5C%2Farxiv.org%5C%2Fabs%5C%2F2312.07604%22%2C%22collections%22%3A%5B%22JFQFQPCZ%22%2C%22SMTHG4E4%22%2C%22SIP3FM63%22%2C%22IBRWV7R7%22%5D%2C%22dateModified%22%3A%222023-12-14T13%3A53%3A21Z%22%7D%7D%2C%7B%22key%22%3A%22VMVNBEVZ%22%2C%22library%22%3A%7B%22id%22%3A10107213%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Redon%20et%20al.%22%2C%22parsedDate%22%3A%222023-07-13%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%201.35%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%20style%3D%5C%22clear%3A%20left%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-left-margin%5C%22%20style%3D%5C%22float%3A%20left%3B%20padding-right%3A%200.5em%3B%20text-align%3A%20right%3B%20width%3A%201em%3B%5C%22%3E1.%3C%5C%2Fdiv%3E%3Cdiv%20class%3D%5C%22csl-right-inline%5C%22%20style%3D%5C%22margin%3A%200%20.4em%200%201.5em%3B%5C%22%3EQ.%20Redon%2C%20Q.%20Liu%2C%20J.-B.%20Bouhiron%2C%20N.%20Mittal%2C%20A.%20Fabre%2C%20R.%20Lopes%2C%20and%20S.%20Nascimbene%2C%20%3Ci%3E%3Ca%20href%3D%27https%3A%5C%2F%5C%2Farxiv.org%5C%2Fabs%5C%2F2307.06251%27%3ERealizing%20the%20entanglement%20Hamiltonian%20of%20a%20topological%20quantum%20Hall%20system%3C%5C%2Fa%3E%3C%5C%2Fi%3E%2C%20ArXiv%3A2307.06251%20%282023%29.%3C%5C%2Fdiv%3E%5Cn%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Realizing%20the%20entanglement%20Hamiltonian%20of%20a%20topological%20quantum%20Hall%20system%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Quentin%22%2C%22lastName%22%3A%22Redon%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Qi%22%2C%22lastName%22%3A%22Liu%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Baptiste%22%2C%22lastName%22%3A%22Bouhiron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Nehal%22%2C%22lastName%22%3A%22Mittal%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Aur%5Cu00e9lien%22%2C%22lastName%22%3A%22Fabre%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Raphael%22%2C%22lastName%22%3A%22Lopes%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Sylvain%22%2C%22lastName%22%3A%22Nascimbene%22%7D%5D%2C%22abstractNote%22%3A%22Topological%20quantum%20many-body%20systems%2C%20such%20as%20Hall%20insulators%2C%20are%20characterized%20by%20a%20hidden%20order%20encoded%20in%20the%20entanglement%20between%20their%20constituents.%20Entanglement%20entropy%2C%20an%20experimentally%20accessible%20single%20number%20that%20globally%20quantifies%20entanglement%2C%20has%20been%20proposed%20as%20a%20first%20signature%20of%20topological%20order.%20Conversely%2C%20the%20full%20description%20of%20entanglement%20relies%20on%20the%20entanglement%20Hamiltonian%2C%20a%20more%20complex%20object%20originally%20introduced%20to%20formulate%20quantum%20entanglement%20in%20curved%20spacetime.%20As%20conjectured%20by%20Li%20and%20Haldane%2C%20the%20entanglement%20Hamiltonian%20of%20a%20many-body%20system%20appears%20to%20be%20directly%20linked%20to%20its%20boundary%20properties%2C%20making%20it%20particularly%20useful%20for%20characterizing%20topological%20systems.%20While%20the%20entanglement%20spectrum%20is%20commonly%20used%20to%20identify%20complex%20phases%20arising%20in%20numerical%20simulations%2C%20its%20measurement%20remains%20an%20outstanding%20challenge.%20Here%2C%20we%20perform%20a%20variational%20approach%20to%20realize%20experimentally%2C%20as%20a%20genuine%20Hamiltonian%2C%20the%20entanglement%20Hamiltonian%20of%20a%20synthetic%20quantum%20Hall%20system.%20We%20use%20a%20synthetic%20dimension%2C%20encoded%20in%20the%20electronic%20spin%20of%20dysprosium%20atoms%2C%20to%20implement%20spatially%20deformed%20Hall%20systems%2C%20as%20suggested%20by%20the%20Bisognano-Wichmann%20prediction.%20The%20spectrum%20of%20the%20optimal%20variational%20Hamiltonian%20exhibits%20a%20chiral%20dispersion%20akin%20to%20a%20topological%20edge%20mode%2C%20revealing%20the%20fundamental%20link%20between%20entanglement%20and%20boundary%20physics.%20Our%20variational%20procedure%20can%20be%20easily%20generalized%20to%20interacting%20many-body%20systems%20on%20various%20platforms%2C%20marking%20an%20important%20step%20towards%20the%20exploration%20of%20exotic%20quantum%20systems%20with%20long-range%20correlations%2C%20such%20as%20fractional%20Hall%20states%2C%20chiral%20spin%20liquids%20and%20critical%20systems.%22%2C%22date%22%3A%222023-07-13%22%2C%22language%22%3A%22%22%2C%22DOI%22%3A%2210.48550%5C%2FarXiv.2307.06251%22%2C%22ISSN%22%3A%22%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Farxiv.org%5C%2Fabs%5C%2F2307.06251%22%2C%22collections%22%3A%5B%22JFQFQPCZ%22%2C%22SMTHG4E4%22%2C%22SIP3FM63%22%2C%22IBRWV7R7%22%5D%2C%22dateModified%22%3A%222023-07-13T09%3A27%3A50Z%22%7D%7D%2C%7B%22key%22%3A%22TAMRTAZJ%22%2C%22library%22%3A%7B%22id%22%3A10107213%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Fabre%20et%20al.%22%2C%22parsedDate%22%3A%222022-04-25%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%201.35%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%20style%3D%5C%22clear%3A%20left%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-left-margin%5C%22%20style%3D%5C%22float%3A%20left%3B%20padding-right%3A%200.5em%3B%20text-align%3A%20right%3B%20width%3A%201em%3B%5C%22%3E1.%3C%5C%2Fdiv%3E%3Cdiv%20class%3D%5C%22csl-right-inline%5C%22%20style%3D%5C%22margin%3A%200%20.4em%200%201.5em%3B%5C%22%3EA.%20Fabre%2C%20J.-B.%20Bouhiron%2C%20T.%20Satoor%2C%20R.%20Lopes%2C%20and%20S.%20Nascimbene%2C%20%3Ci%3E%3Ca%20href%3D%27https%3A%5C%2F%5C%2Flink.aps.org%5C%2Fdoi%5C%2F10.1103%5C%2FPhysRevLett.128.173202%27%3ELaughlin%27s%20Topological%20Charge%20Pump%20in%20an%20Atomic%20Hall%20Cylinder%3C%5C%2Fa%3E%3C%5C%2Fi%3E%2C%20Phys.%20Rev.%20Lett.%20%3Cb%3E128%3C%5C%2Fb%3E%2C%20173202%20%282022%29.%3C%5C%2Fdiv%3E%5Cn%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Laughlin%27s%20Topological%20Charge%20Pump%20in%20an%20Atomic%20Hall%20Cylinder%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Aur%5Cu00e9lien%22%2C%22lastName%22%3A%22Fabre%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Baptiste%22%2C%22lastName%22%3A%22Bouhiron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Tanish%22%2C%22lastName%22%3A%22Satoor%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Raphael%22%2C%22lastName%22%3A%22Lopes%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Sylvain%22%2C%22lastName%22%3A%22Nascimbene%22%7D%5D%2C%22abstractNote%22%3A%22%22%2C%22date%22%3A%222022-4-25%22%2C%22language%22%3A%22en%22%2C%22DOI%22%3A%2210.1103%5C%2FPhysRevLett.128.173202%22%2C%22ISSN%22%3A%220031-9007%2C%201079-7114%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Flink.aps.org%5C%2Fdoi%5C%2F10.1103%5C%2FPhysRevLett.128.173202%22%2C%22collections%22%3A%5B%22JFQFQPCZ%22%2C%22SMTHG4E4%22%2C%22SIP3FM63%22%2C%22IBRWV7R7%22%5D%2C%22dateModified%22%3A%222022-09-20T13%3A41%3A24Z%22%7D%7D%2C%7B%22key%22%3A%228DFPSWHS%22%2C%22library%22%3A%7B%22id%22%3A10107213%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Fabre%20et%20al.%22%2C%22parsedDate%22%3A%222022-01-05%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%201.35%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%20style%3D%5C%22clear%3A%20left%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-left-margin%5C%22%20style%3D%5C%22float%3A%20left%3B%20padding-right%3A%200.5em%3B%20text-align%3A%20right%3B%20width%3A%201em%3B%5C%22%3E1.%3C%5C%2Fdiv%3E%3Cdiv%20class%3D%5C%22csl-right-inline%5C%22%20style%3D%5C%22margin%3A%200%20.4em%200%201.5em%3B%5C%22%3EA.%20Fabre%2C%20J.-B.%20Bouhiron%2C%20T.%20Satoor%2C%20R.%20Lopes%2C%20and%20S.%20Nascimbene%2C%20%3Ci%3E%3Ca%20href%3D%27https%3A%5C%2F%5C%2Flink.aps.org%5C%2Fdoi%5C%2F10.1103%5C%2FPhysRevA.105.013301%27%3ESimulating%20two-dimensional%20dynamics%20within%20a%20large-size%20atomic%20spin%3C%5C%2Fa%3E%3C%5C%2Fi%3E%2C%20Phys.%20Rev.%20A%20%3Cb%3E105%3C%5C%2Fb%3E%2C%20013301%20%282022%29.%3C%5C%2Fdiv%3E%5Cn%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Simulating%20two-dimensional%20dynamics%20within%20a%20large-size%20atomic%20spin%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Aur%5Cu00e9lien%22%2C%22lastName%22%3A%22Fabre%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Baptiste%22%2C%22lastName%22%3A%22Bouhiron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Tanish%22%2C%22lastName%22%3A%22Satoor%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Raphael%22%2C%22lastName%22%3A%22Lopes%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Sylvain%22%2C%22lastName%22%3A%22Nascimbene%22%7D%5D%2C%22abstractNote%22%3A%22%22%2C%22date%22%3A%222022-1-5%22%2C%22language%22%3A%22en%22%2C%22DOI%22%3A%2210.1103%5C%2FPhysRevA.105.013301%22%2C%22ISSN%22%3A%222469-9926%2C%202469-9934%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Flink.aps.org%5C%2Fdoi%5C%2F10.1103%5C%2FPhysRevA.105.013301%22%2C%22collections%22%3A%5B%22JFQFQPCZ%22%2C%22SMTHG4E4%22%2C%22SIP3FM63%22%2C%22IBRWV7R7%22%5D%2C%22dateModified%22%3A%222022-09-20T13%3A59%3A24Z%22%7D%7D%2C%7B%22key%22%3A%223JHD7F8A%22%2C%22library%22%3A%7B%22id%22%3A10107213%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Satoor%20et%20al.%22%2C%22parsedDate%22%3A%222021-10-01%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%201.35%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%20style%3D%5C%22clear%3A%20left%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-left-margin%5C%22%20style%3D%5C%22float%3A%20left%3B%20padding-right%3A%200.5em%3B%20text-align%3A%20right%3B%20width%3A%201em%3B%5C%22%3E1.%3C%5C%2Fdiv%3E%3Cdiv%20class%3D%5C%22csl-right-inline%5C%22%20style%3D%5C%22margin%3A%200%20.4em%200%201.5em%3B%5C%22%3ET.%20Satoor%2C%20A.%20Fabre%2C%20J.-B.%20Bouhiron%2C%20A.%20Evrard%2C%20R.%20Lopes%2C%20and%20S.%20Nascimbene%2C%20%3Ci%3E%3Ca%20href%3D%27https%3A%5C%2F%5C%2Flink.aps.org%5C%2Fdoi%5C%2F10.1103%5C%2FPhysRevResearch.3.043001%27%3EPartitioning%20dysprosium%27s%20electronic%20spin%20to%20reveal%20entanglement%20in%20nonclassical%20states%3C%5C%2Fa%3E%3C%5C%2Fi%3E%2C%20Phys.%20Rev.%20Research%20%3Cb%3E3%3C%5C%2Fb%3E%2C%20043001%20%282021%29.%3C%5C%2Fdiv%3E%5Cn%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Partitioning%20dysprosium%27s%20electronic%20spin%20to%20reveal%20entanglement%20in%20nonclassical%20states%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Tanish%22%2C%22lastName%22%3A%22Satoor%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Aur%5Cu00e9lien%22%2C%22lastName%22%3A%22Fabre%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Baptiste%22%2C%22lastName%22%3A%22Bouhiron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Alexandre%22%2C%22lastName%22%3A%22Evrard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Raphael%22%2C%22lastName%22%3A%22Lopes%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Sylvain%22%2C%22lastName%22%3A%22Nascimbene%22%7D%5D%2C%22abstractNote%22%3A%22%22%2C%22date%22%3A%222021-10-1%22%2C%22language%22%3A%22en%22%2C%22DOI%22%3A%2210.1103%5C%2FPhysRevResearch.3.043001%22%2C%22ISSN%22%3A%222643-1564%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Flink.aps.org%5C%2Fdoi%5C%2F10.1103%5C%2FPhysRevResearch.3.043001%22%2C%22collections%22%3A%5B%22JFQFQPCZ%22%2C%22SMTHG4E4%22%2C%22SIP3FM63%22%2C%22IBRWV7R7%22%5D%2C%22dateModified%22%3A%222022-09-20T13%3A59%3A43Z%22%7D%7D%2C%7B%22key%22%3A%22M3TN6X67%22%2C%22library%22%3A%7B%22id%22%3A10107213%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Barbiero%20et%20al.%22%2C%22parsedDate%22%3A%222020-12-08%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%201.35%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%20style%3D%5C%22clear%3A%20left%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-left-margin%5C%22%20style%3D%5C%22float%3A%20left%3B%20padding-right%3A%200.5em%3B%20text-align%3A%20right%3B%20width%3A%201em%3B%5C%22%3E1.%3C%5C%2Fdiv%3E%3Cdiv%20class%3D%5C%22csl-right-inline%5C%22%20style%3D%5C%22margin%3A%200%20.4em%200%201.5em%3B%5C%22%3EL.%20Barbiero%2C%20L.%20Chomaz%2C%20S.%20Nascimbene%2C%20and%20N.%20Goldman%2C%20%3Ci%3E%3Ca%20href%3D%27https%3A%5C%2F%5C%2Flink.aps.org%5C%2Fdoi%5C%2F10.1103%5C%2FPhysRevResearch.2.043340%27%3EBose-Hubbard%20physics%20in%20synthetic%20dimensions%20from%20interaction%20Trotterization%3C%5C%2Fa%3E%3C%5C%2Fi%3E%2C%20Phys.%20Rev.%20Research%20%3Cb%3E2%3C%5C%2Fb%3E%2C%20043340%20%282020%29.%3C%5C%2Fdiv%3E%5Cn%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Bose-Hubbard%20physics%20in%20synthetic%20dimensions%20from%20interaction%20Trotterization%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22L.%22%2C%22lastName%22%3A%22Barbiero%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22L.%22%2C%22lastName%22%3A%22Chomaz%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22S.%22%2C%22lastName%22%3A%22Nascimbene%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22N.%22%2C%22lastName%22%3A%22Goldman%22%7D%5D%2C%22abstractNote%22%3A%22%22%2C%22date%22%3A%222020-12-8%22%2C%22language%22%3A%22en%22%2C%22DOI%22%3A%2210.1103%5C%2FPhysRevResearch.2.043340%22%2C%22ISSN%22%3A%222643-1564%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Flink.aps.org%5C%2Fdoi%5C%2F10.1103%5C%2FPhysRevResearch.2.043340%22%2C%22collections%22%3A%5B%22JFQFQPCZ%22%2C%22SIP3FM63%22%2C%22IBRWV7R7%22%5D%2C%22dateModified%22%3A%222022-10-06T12%3A05%3A17Z%22%7D%7D%2C%7B%22key%22%3A%22PWU8T9RN%22%2C%22library%22%3A%7B%22id%22%3A10107213%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Chalopin%20et%20al.%22%2C%22parsedDate%22%3A%222020%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%201.35%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%20style%3D%5C%22clear%3A%20left%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-left-margin%5C%22%20style%3D%5C%22float%3A%20left%3B%20padding-right%3A%200.5em%3B%20text-align%3A%20right%3B%20width%3A%201em%3B%5C%22%3E1.%3C%5C%2Fdiv%3E%3Cdiv%20class%3D%5C%22csl-right-inline%5C%22%20style%3D%5C%22margin%3A%200%20.4em%200%201.5em%3B%5C%22%3ET.%20Chalopin%2C%20T.%20Satoor%2C%20A.%20Evrard%2C%20V.%20Makhalov%2C%20J.%20Dalibard%2C%20R.%20Lopes%2C%20and%20S.%20Nascimbene%2C%20%3Ci%3E%3Ca%20href%3D%27http%3A%5C%2F%5C%2Fwww.nature.com%5C%2Farticles%5C%2Fs41567-020-0942-5%27%3EProbing%20chiral%20edge%20dynamics%20and%20bulk%20topology%20of%20a%20synthetic%20Hall%20system%3C%5C%2Fa%3E%3C%5C%2Fi%3E%2C%20Nat.%20Phys.%20%3Cb%3E16%3C%5C%2Fb%3E%2C%201017%20%282020%29.%3C%5C%2Fdiv%3E%5Cn%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Probing%20chiral%20edge%20dynamics%20and%20bulk%20topology%20of%20a%20synthetic%20Hall%20system%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Thomas%22%2C%22lastName%22%3A%22Chalopin%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Tanish%22%2C%22lastName%22%3A%22Satoor%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Alexandre%22%2C%22lastName%22%3A%22Evrard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Vasiliy%22%2C%22lastName%22%3A%22Makhalov%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean%22%2C%22lastName%22%3A%22Dalibard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Raphael%22%2C%22lastName%22%3A%22Lopes%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Sylvain%22%2C%22lastName%22%3A%22Nascimbene%22%7D%5D%2C%22abstractNote%22%3A%22%22%2C%22date%22%3A%2210%5C%2F2020%22%2C%22language%22%3A%22en%22%2C%22DOI%22%3A%2210.1038%5C%2Fs41567-020-0942-5%22%2C%22ISSN%22%3A%221745-2473%2C%201745-2481%22%2C%22url%22%3A%22http%3A%5C%2F%5C%2Fwww.nature.com%5C%2Farticles%5C%2Fs41567-020-0942-5%22%2C%22collections%22%3A%5B%22JFQFQPCZ%22%2C%22SMTHG4E4%22%2C%22SIP3FM63%22%2C%22IBRWV7R7%22%5D%2C%22dateModified%22%3A%222022-09-23T14%3A32%3A37Z%22%7D%7D%2C%7B%22key%22%3A%22AJCFR39I%22%2C%22library%22%3A%7B%22id%22%3A10107213%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Makhalov%20et%20al.%22%2C%22parsedDate%22%3A%222019-09-18%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%201.35%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%20style%3D%5C%22clear%3A%20left%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-left-margin%5C%22%20style%3D%5C%22float%3A%20left%3B%20padding-right%3A%200.5em%3B%20text-align%3A%20right%3B%20width%3A%201em%3B%5C%22%3E1.%3C%5C%2Fdiv%3E%3Cdiv%20class%3D%5C%22csl-right-inline%5C%22%20style%3D%5C%22margin%3A%200%20.4em%200%201.5em%3B%5C%22%3EV.%20Makhalov%2C%20T.%20Satoor%2C%20A.%20Evrard%2C%20T.%20Chalopin%2C%20R.%20Lopes%2C%20and%20S.%20Nascimbene%2C%20%3Ci%3E%3Ca%20href%3D%27https%3A%5C%2F%5C%2Flink.aps.org%5C%2Fdoi%5C%2F10.1103%5C%2FPhysRevLett.123.120601%27%3EProbing%20Quantum%20Criticality%20and%20Symmetry%20Breaking%20at%20the%20Microscopic%20Level%3C%5C%2Fa%3E%3C%5C%2Fi%3E%2C%20Phys.%20Rev.%20Lett.%20%3Cb%3E123%3C%5C%2Fb%3E%2C%20120601%20%282019%29.%3C%5C%2Fdiv%3E%5Cn%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Probing%20Quantum%20Criticality%20and%20Symmetry%20Breaking%20at%20the%20Microscopic%20Level%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Vasiliy%22%2C%22lastName%22%3A%22Makhalov%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Tanish%22%2C%22lastName%22%3A%22Satoor%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Alexandre%22%2C%22lastName%22%3A%22Evrard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Thomas%22%2C%22lastName%22%3A%22Chalopin%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Raphael%22%2C%22lastName%22%3A%22Lopes%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Sylvain%22%2C%22lastName%22%3A%22Nascimbene%22%7D%5D%2C%22abstractNote%22%3A%22%22%2C%22date%22%3A%222019-9-18%22%2C%22language%22%3A%22en%22%2C%22DOI%22%3A%2210.1103%5C%2FPhysRevLett.123.120601%22%2C%22ISSN%22%3A%220031-9007%2C%201079-7114%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Flink.aps.org%5C%2Fdoi%5C%2F10.1103%5C%2FPhysRevLett.123.120601%22%2C%22collections%22%3A%5B%22JFQFQPCZ%22%2C%22SMTHG4E4%22%2C%22SIP3FM63%22%2C%22IBRWV7R7%22%5D%2C%22dateModified%22%3A%222022-09-19T19%3A40%3A54Z%22%7D%7D%2C%7B%22key%22%3A%2277EKTAI2%22%2C%22library%22%3A%7B%22id%22%3A10107213%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Evrard%20et%20al.%22%2C%22parsedDate%22%3A%222019-05-01%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%201.35%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%20style%3D%5C%22clear%3A%20left%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-left-margin%5C%22%20style%3D%5C%22float%3A%20left%3B%20padding-right%3A%200.5em%3B%20text-align%3A%20right%3B%20width%3A%201em%3B%5C%22%3E1.%3C%5C%2Fdiv%3E%3Cdiv%20class%3D%5C%22csl-right-inline%5C%22%20style%3D%5C%22margin%3A%200%20.4em%200%201.5em%3B%5C%22%3EA.%20Evrard%2C%20V.%20Makhalov%2C%20T.%20Chalopin%2C%20L.%20A.%20Sidorenkov%2C%20J.%20Dalibard%2C%20R.%20Lopes%2C%20and%20S.%20Nascimbene%2C%20%3Ci%3E%3Ca%20href%3D%27https%3A%5C%2F%5C%2Flink.aps.org%5C%2Fdoi%5C%2F10.1103%5C%2FPhysRevLett.122.173601%27%3EEnhanced%20Magnetic%20Sensitivity%20with%20Non-Gaussian%20Quantum%20Fluctuations%3C%5C%2Fa%3E%3C%5C%2Fi%3E%2C%20Phys.%20Rev.%20Lett.%20%3Cb%3E122%3C%5C%2Fb%3E%2C%20173601%20%282019%29.%3C%5C%2Fdiv%3E%5Cn%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Enhanced%20Magnetic%20Sensitivity%20with%20Non-Gaussian%20Quantum%20Fluctuations%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Alexandre%22%2C%22lastName%22%3A%22Evrard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Vasiliy%22%2C%22lastName%22%3A%22Makhalov%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Thomas%22%2C%22lastName%22%3A%22Chalopin%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Leonid%20A.%22%2C%22lastName%22%3A%22Sidorenkov%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean%22%2C%22lastName%22%3A%22Dalibard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Raphael%22%2C%22lastName%22%3A%22Lopes%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Sylvain%22%2C%22lastName%22%3A%22Nascimbene%22%7D%5D%2C%22abstractNote%22%3A%22%22%2C%22date%22%3A%222019-5-1%22%2C%22language%22%3A%22en%22%2C%22DOI%22%3A%2210.1103%5C%2FPhysRevLett.122.173601%22%2C%22ISSN%22%3A%220031-9007%2C%201079-7114%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Flink.aps.org%5C%2Fdoi%5C%2F10.1103%5C%2FPhysRevLett.122.173601%22%2C%22collections%22%3A%5B%22JFQFQPCZ%22%2C%22SMTHG4E4%22%2C%22SIP3FM63%22%2C%22IBRWV7R7%22%5D%2C%22dateModified%22%3A%222022-09-19T19%3A40%3A39Z%22%7D%7D%2C%7B%22key%22%3A%22ZWAUHWMC%22%2C%22library%22%3A%7B%22id%22%3A10107213%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Chalopin%20et%20al.%22%2C%22parsedDate%22%3A%222018-10-22%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%201.35%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%20style%3D%5C%22clear%3A%20left%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-left-margin%5C%22%20style%3D%5C%22float%3A%20left%3B%20padding-right%3A%200.5em%3B%20text-align%3A%20right%3B%20width%3A%201em%3B%5C%22%3E1.%3C%5C%2Fdiv%3E%3Cdiv%20class%3D%5C%22csl-right-inline%5C%22%20style%3D%5C%22margin%3A%200%20.4em%200%201.5em%3B%5C%22%3ET.%20Chalopin%2C%20V.%20Makhalov%2C%20C.%20Bouazza%2C%20A.%20Evrard%2C%20A.%20Barker%2C%20M.%20Lepers%2C%20J.-F.%20Wyart%2C%20O.%20Dulieu%2C%20J.%20Dalibard%2C%20R.%20Lopes%2C%20and%20S.%20Nascimbene%2C%20%3Ci%3E%3Ca%20href%3D%27https%3A%5C%2F%5C%2Flink.aps.org%5C%2Fdoi%5C%2F10.1103%5C%2FPhysRevA.98.040502%27%3EAnisotropic%20light%20shift%20and%20magic%20polarization%20of%20the%20intercombination%20line%20of%20dysprosium%20atoms%20in%20a%20far-detuned%20dipole%20trap%3C%5C%2Fa%3E%3C%5C%2Fi%3E%2C%20Phys.%20Rev.%20A%20%3Cb%3E98%3C%5C%2Fb%3E%2C%20040502%20%282018%29.%3C%5C%2Fdiv%3E%5Cn%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Anisotropic%20light%20shift%20and%20magic%20polarization%20of%20the%20intercombination%20line%20of%20dysprosium%20atoms%20in%20a%20far-detuned%20dipole%20trap%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Thomas%22%2C%22lastName%22%3A%22Chalopin%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Vasiliy%22%2C%22lastName%22%3A%22Makhalov%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Chayma%22%2C%22lastName%22%3A%22Bouazza%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Alexandre%22%2C%22lastName%22%3A%22Evrard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Adam%22%2C%22lastName%22%3A%22Barker%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Maxence%22%2C%22lastName%22%3A%22Lepers%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Fran%5Cu00e7ois%22%2C%22lastName%22%3A%22Wyart%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Olivier%22%2C%22lastName%22%3A%22Dulieu%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean%22%2C%22lastName%22%3A%22Dalibard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Raphael%22%2C%22lastName%22%3A%22Lopes%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Sylvain%22%2C%22lastName%22%3A%22Nascimbene%22%7D%5D%2C%22abstractNote%22%3A%22%22%2C%22date%22%3A%222018-10-22%22%2C%22language%22%3A%22en%22%2C%22DOI%22%3A%2210.1103%5C%2FPhysRevA.98.040502%22%2C%22ISSN%22%3A%222469-9926%2C%202469-9934%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Flink.aps.org%5C%2Fdoi%5C%2F10.1103%5C%2FPhysRevA.98.040502%22%2C%22collections%22%3A%5B%22JFQFQPCZ%22%2C%22SMTHG4E4%22%2C%22SIP3FM63%22%2C%22IBRWV7R7%22%5D%2C%22dateModified%22%3A%222022-09-23T14%3A34%3A23Z%22%7D%7D%2C%7B%22key%22%3A%22N9ZF4ZYT%22%2C%22library%22%3A%7B%22id%22%3A10107213%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Chalopin%20et%20al.%22%2C%22parsedDate%22%3A%222018%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%201.35%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%20style%3D%5C%22clear%3A%20left%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-left-margin%5C%22%20style%3D%5C%22float%3A%20left%3B%20padding-right%3A%200.5em%3B%20text-align%3A%20right%3B%20width%3A%201em%3B%5C%22%3E1.%3C%5C%2Fdiv%3E%3Cdiv%20class%3D%5C%22csl-right-inline%5C%22%20style%3D%5C%22margin%3A%200%20.4em%200%201.5em%3B%5C%22%3ET.%20Chalopin%2C%20C.%20Bouazza%2C%20A.%20Evrard%2C%20V.%20Makhalov%2C%20D.%20Dreon%2C%20J.%20Dalibard%2C%20L.%20A.%20Sidorenkov%2C%20and%20S.%20Nascimbene%2C%20%3Ci%3E%3Ca%20href%3D%27http%3A%5C%2F%5C%2Fwww.nature.com%5C%2Farticles%5C%2Fs41467-018-07433-1%27%3EQuantum-enhanced%20sensing%20using%20non-classical%20spin%20states%20of%20a%20highly%20magnetic%20atom%3C%5C%2Fa%3E%3C%5C%2Fi%3E%2C%20Nat%20Commun%20%3Cb%3E9%3C%5C%2Fb%3E%2C%204955%20%282018%29.%3C%5C%2Fdiv%3E%5Cn%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Quantum-enhanced%20sensing%20using%20non-classical%20spin%20states%20of%20a%20highly%20magnetic%20atom%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Thomas%22%2C%22lastName%22%3A%22Chalopin%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Chayma%22%2C%22lastName%22%3A%22Bouazza%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Alexandre%22%2C%22lastName%22%3A%22Evrard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Vasiliy%22%2C%22lastName%22%3A%22Makhalov%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Davide%22%2C%22lastName%22%3A%22Dreon%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean%22%2C%22lastName%22%3A%22Dalibard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Leonid%20A.%22%2C%22lastName%22%3A%22Sidorenkov%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Sylvain%22%2C%22lastName%22%3A%22Nascimbene%22%7D%5D%2C%22abstractNote%22%3A%22%22%2C%22date%22%3A%2212%5C%2F2018%22%2C%22language%22%3A%22en%22%2C%22DOI%22%3A%2210.1038%5C%2Fs41467-018-07433-1%22%2C%22ISSN%22%3A%222041-1723%22%2C%22url%22%3A%22http%3A%5C%2F%5C%2Fwww.nature.com%5C%2Farticles%5C%2Fs41467-018-07433-1%22%2C%22collections%22%3A%5B%22JFQFQPCZ%22%2C%22SIP3FM63%22%2C%22IBRWV7R7%22%5D%2C%22dateModified%22%3A%222022-09-23T14%3A34%3A37Z%22%7D%7D%2C%7B%22key%22%3A%22BA5HJA2A%22%2C%22library%22%3A%7B%22id%22%3A10107213%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Dreon%20et%20al.%22%2C%22parsedDate%22%3A%222017-03-28%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%201.35%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%20style%3D%5C%22clear%3A%20left%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-left-margin%5C%22%20style%3D%5C%22float%3A%20left%3B%20padding-right%3A%200.5em%3B%20text-align%3A%20right%3B%20width%3A%201em%3B%5C%22%3E1.%3C%5C%2Fdiv%3E%3Cdiv%20class%3D%5C%22csl-right-inline%5C%22%20style%3D%5C%22margin%3A%200%20.4em%200%201.5em%3B%5C%22%3ED.%20Dreon%2C%20L.%20A.%20Sidorenkov%2C%20C.%20Bouazza%2C%20W.%20Maineult%2C%20J.%20Dalibard%2C%20and%20S.%20Nascimbene%2C%20%3Ci%3E%3Ca%20href%3D%27https%3A%5C%2F%5C%2Fiopscience.iop.org%5C%2Farticle%5C%2F10.1088%5C%2F1361-6455%5C%2Faa5db5%27%3EOptical%20cooling%20and%20trapping%20of%20highly%20magnetic%20atoms%3A%20the%20benefits%20of%20a%20spontaneous%20spin%20polarization%3C%5C%2Fa%3E%3C%5C%2Fi%3E%2C%20J.%20Phys.%20B%3A%20At.%20Mol.%20Opt.%20Phys.%20%3Cb%3E50%3C%5C%2Fb%3E%2C%20065005%20%282017%29.%3C%5C%2Fdiv%3E%5Cn%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Optical%20cooling%20and%20trapping%20of%20highly%20magnetic%20atoms%3A%20the%20benefits%20of%20a%20spontaneous%20spin%20polarization%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Davide%22%2C%22lastName%22%3A%22Dreon%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Leonid%20A%22%2C%22lastName%22%3A%22Sidorenkov%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Chayma%22%2C%22lastName%22%3A%22Bouazza%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Wilfried%22%2C%22lastName%22%3A%22Maineult%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean%22%2C%22lastName%22%3A%22Dalibard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Sylvain%22%2C%22lastName%22%3A%22Nascimbene%22%7D%5D%2C%22abstractNote%22%3A%22%22%2C%22date%22%3A%222017-03-28%22%2C%22language%22%3A%22%22%2C%22DOI%22%3A%2210.1088%5C%2F1361-6455%5C%2Faa5db5%22%2C%22ISSN%22%3A%220953-4075%2C%201361-6455%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fiopscience.iop.org%5C%2Farticle%5C%2F10.1088%5C%2F1361-6455%5C%2Faa5db5%22%2C%22collections%22%3A%5B%22JFQFQPCZ%22%2C%22SIP3FM63%22%2C%22IBRWV7R7%22%5D%2C%22dateModified%22%3A%222022-09-23T14%3A37%3A07Z%22%7D%7D%2C%7B%22key%22%3A%22U4M83YKE%22%2C%22library%22%3A%7B%22id%22%3A10107213%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Li%20et%20al.%22%2C%22parsedDate%22%3A%222017-01-14%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%201.35%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%20style%3D%5C%22clear%3A%20left%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-left-margin%5C%22%20style%3D%5C%22float%3A%20left%3B%20padding-right%3A%200.5em%3B%20text-align%3A%20right%3B%20width%3A%201em%3B%5C%22%3E1.%3C%5C%2Fdiv%3E%3Cdiv%20class%3D%5C%22csl-right-inline%5C%22%20style%3D%5C%22margin%3A%200%20.4em%200%201.5em%3B%5C%22%3EH.%20Li%2C%20J.-F.%20Wyart%2C%20O.%20Dulieu%2C%20S.%20Nascimb%5Cu00e8ne%2C%20and%20M.%20Lepers%2C%20%3Ci%3EOptical%20Trapping%20of%20Ultracold%20Dysprosium%20Atoms%3A%20Transition%20Probabilities%2C%20Dynamic%20Dipole%20Polarizabilities%20and%20van%20Der%20Waals%20%3Cspan%20style%3D%5C%22font-style%3Anormal%3B%5C%22%3EC%3C%5C%2Fspan%3E%20%3Csub%3E6%3C%5C%2Fsub%3E%20Coefficients%3C%5C%2Fi%3E%2C%20J.%20Phys.%20B%3A%20At.%20Mol.%20Opt.%20Phys.%20%3Cb%3E50%3C%5C%2Fb%3E%2C%20014005%20%282017%29.%3C%5C%2Fdiv%3E%5Cn%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Optical%20trapping%20of%20ultracold%20dysprosium%20atoms%3A%20transition%20probabilities%2C%20dynamic%20dipole%20polarizabilities%20and%20van%20der%20Waals%20%3Ci%3EC%3C%5C%2Fi%3E%20%3Csub%3E6%3C%5C%2Fsub%3E%20coefficients%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22H%22%2C%22lastName%22%3A%22Li%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22J-F%22%2C%22lastName%22%3A%22Wyart%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22O%22%2C%22lastName%22%3A%22Dulieu%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22S%22%2C%22lastName%22%3A%22Nascimb%5Cu00e8ne%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22M%22%2C%22lastName%22%3A%22Lepers%22%7D%5D%2C%22abstractNote%22%3A%22%22%2C%22date%22%3A%222017-01-14%22%2C%22language%22%3A%22%22%2C%22DOI%22%3A%2210.1088%5C%2F1361-6455%5C%2F50%5C%2F1%5C%2F014005%22%2C%22ISSN%22%3A%220953-4075%2C%201361-6455%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fiopscience.iop.org%5C%2Farticle%5C%2F10.1088%5C%2F1361-6455%5C%2F50%5C%2F1%5C%2F014005%22%2C%22collections%22%3A%5B%22JFQFQPCZ%22%2C%22SIP3FM63%22%2C%22IBRWV7R7%22%5D%2C%22dateModified%22%3A%222022-10-06T12%3A06%3A28Z%22%7D%7D%2C%7B%22key%22%3A%22JEKJSZZA%22%2C%22library%22%3A%7B%22id%22%3A10107213%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Nascimbene%20et%20al.%22%2C%22parsedDate%22%3A%222015-10-02%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%201.35%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%20style%3D%5C%22clear%3A%20left%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-left-margin%5C%22%20style%3D%5C%22float%3A%20left%3B%20padding-right%3A%200.5em%3B%20text-align%3A%20right%3B%20width%3A%201em%3B%5C%22%3E1.%3C%5C%2Fdiv%3E%3Cdiv%20class%3D%5C%22csl-right-inline%5C%22%20style%3D%5C%22margin%3A%200%20.4em%200%201.5em%3B%5C%22%3ES.%20Nascimbene%2C%20N.%20Goldman%2C%20N.%20R.%20Cooper%2C%20and%20J.%20Dalibard%2C%20%3Ci%3E%3Ca%20href%3D%27https%3A%5C%2F%5C%2Flink.aps.org%5C%2Fdoi%5C%2F10.1103%5C%2FPhysRevLett.115.140401%27%3EDynamic%20Optical%20Lattices%20of%20Subwavelength%20Spacing%20for%20Ultracold%20Atoms%3C%5C%2Fa%3E%3C%5C%2Fi%3E%2C%20Phys.%20Rev.%20Lett.%20%3Cb%3E115%3C%5C%2Fb%3E%2C%20140401%20%282015%29.%3C%5C%2Fdiv%3E%5Cn%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Dynamic%20Optical%20Lattices%20of%20Subwavelength%20Spacing%20for%20Ultracold%20Atoms%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Sylvain%22%2C%22lastName%22%3A%22Nascimbene%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Nathan%22%2C%22lastName%22%3A%22Goldman%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Nigel%20R.%22%2C%22lastName%22%3A%22Cooper%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean%22%2C%22lastName%22%3A%22Dalibard%22%7D%5D%2C%22abstractNote%22%3A%22We%20propose%20a%20scheme%20for%20realizing%20lattice%20potentials%20of%20subwavelength%20spacing%20for%20ultracold%20atoms.%20It%20is%20based%20on%20spin-dependent%20optical%20lattices%20with%20a%20time-periodic%20modulation.%20We%20show%20that%20the%20atomic%20motion%20is%20well%20described%20by%20the%20combined%20action%20of%20an%20effective%2C%20time-independent%20lattice%20of%20small%20spacing%2C%20together%20with%20a%20micromotion%20associated%20with%20the%20time%20modulation.%20A%20numerical%20simulation%20shows%20that%20an%20atomic%20gas%20can%20be%20adiabatically%20loaded%20into%20the%20effective%20lattice%20ground%20state%2C%20for%20time%20scales%20comparable%20to%20the%20ones%20required%20for%20adiabatic%20loading%20of%20standard%20optical%20lattices.%20We%20generalize%20our%20scheme%20to%20a%20two-dimensional%20geometry%2C%20leading%20to%20Bloch%20bands%20with%20nonzero%20Chern%20numbers.%20The%20realization%20of%20lattices%20of%20subwavelength%20spacing%20allows%20for%20the%20enhancement%20of%20energy%20scales%2C%20which%20could%20facilitate%20the%20achievement%20of%20strongly%20correlated%20%28topological%29%20states.%22%2C%22date%22%3A%222015-10-02%22%2C%22language%22%3A%22%22%2C%22DOI%22%3A%2210.1103%5C%2FPhysRevLett.115.140401%22%2C%22ISSN%22%3A%22%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Flink.aps.org%5C%2Fdoi%5C%2F10.1103%5C%2FPhysRevLett.115.140401%22%2C%22collections%22%3A%5B%22JFQFQPCZ%22%2C%22SIP3FM63%22%2C%22IBRWV7R7%22%5D%2C%22dateModified%22%3A%222022-10-06T12%3A08%3A17Z%22%7D%7D%2C%7B%22key%22%3A%22N6KUM9EX%22%2C%22library%22%3A%7B%22id%22%3A10107213%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Nascimb%5Cu00e8ne%22%2C%22parsedDate%22%3A%222013-07-14%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%201.35%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%20style%3D%5C%22clear%3A%20left%3B%20%5C%22%3E%5Cn%20%3Cdiv%20class%3D%5C%22csl-left-margin%5C%22%20style%3D%5C%22float%3A%20left%3B%20padding-right%3A%200.5em%3B%20text-align%3A%20right%3B%20width%3A%201em%3B%5C%22%3E1.%3C%5C%2Fdiv%3E%3Cdiv%20class%3D%5C%22csl-right-inline%5C%22%20style%3D%5C%22margin%3A%200%20.4em%200%201.5em%3B%5C%22%3ES.%20Nascimb%5Cu00e8ne%2C%20%3Ci%3E%3Ca%20href%3D%27https%3A%5C%2F%5C%2Fiopscience.iop.org%5C%2Farticle%5C%2F10.1088%5C%2F0953-4075%5C%2F46%5C%2F13%5C%2F134005%27%3ERealizing%20one-dimensional%20topological%20superfluids%20with%20ultracold%20atomic%20gases%3C%5C%2Fa%3E%3C%5C%2Fi%3E%2C%20J.%20Phys.%20B%3A%20At.%20Mol.%20Opt.%20Phys.%20%3Cb%3E46%3C%5C%2Fb%3E%2C%20134005%20%282013%29.%3C%5C%2Fdiv%3E%5Cn%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Realizing%20one-dimensional%20topological%20superfluids%20with%20ultracold%20atomic%20gases%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Sylvain%22%2C%22lastName%22%3A%22Nascimb%5Cu00e8ne%22%7D%5D%2C%22abstractNote%22%3A%22%22%2C%22date%22%3A%222013-07-14%22%2C%22language%22%3A%22%22%2C%22DOI%22%3A%2210.1088%5C%2F0953-4075%5C%2F46%5C%2F13%5C%2F134005%22%2C%22ISSN%22%3A%220953-4075%2C%201361-6455%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fiopscience.iop.org%5C%2Farticle%5C%2F10.1088%5C%2F0953-4075%5C%2F46%5C%2F13%5C%2F134005%22%2C%22collections%22%3A%5B%22JFQFQPCZ%22%2C%22SIP3FM63%22%2C%22IBRWV7R7%22%5D%2C%22dateModified%22%3A%222022-10-06T12%3A10%3A24Z%22%7D%7D%5D%7D
1.
J.-B. Bouhiron, A. Fabre, Q. Liu, Q. Redon, N. Mittal, T. Satoor, R. Lopes, and S. Nascimbene, Realization of an atomic quantum Hall system in four dimensions, ArXiv:2210.06322, Science 384, 223 (2024).
1.
A. Fabre and S. Nascimbene, Atomic topological quantum matter using synthetic dimensions, EPL 145, 65001 (2024).
1.
A. Nardin, R. Lopes, M. Rizzi, L. Mazza, and S. Nascimbene, Bisognano-Wichmann Hamiltonian for the entanglement spectroscopy of fractional quantum Hall states, ArXiv:2312.07604 (2023).
1.
Q. Redon, Q. Liu, J.-B. Bouhiron, N. Mittal, A. Fabre, R. Lopes, and S. Nascimbene, Realizing the entanglement Hamiltonian of a topological quantum Hall system, ArXiv:2307.06251 (2023).
1.
A. Fabre, J.-B. Bouhiron, T. Satoor, R. Lopes, and S. Nascimbene, Laughlin's Topological Charge Pump in an Atomic Hall Cylinder, Phys. Rev. Lett. 128, 173202 (2022).
1.
A. Fabre, J.-B. Bouhiron, T. Satoor, R. Lopes, and S. Nascimbene, Simulating two-dimensional dynamics within a large-size atomic spin, Phys. Rev. A 105, 013301 (2022).
1.
T. Satoor, A. Fabre, J.-B. Bouhiron, A. Evrard, R. Lopes, and S. Nascimbene, Partitioning dysprosium's electronic spin to reveal entanglement in nonclassical states, Phys. Rev. Research 3, 043001 (2021).
1.
L. Barbiero, L. Chomaz, S. Nascimbene, and N. Goldman, Bose-Hubbard physics in synthetic dimensions from interaction Trotterization, Phys. Rev. Research 2, 043340 (2020).
1.
T. Chalopin, T. Satoor, A. Evrard, V. Makhalov, J. Dalibard, R. Lopes, and S. Nascimbene, Probing chiral edge dynamics and bulk topology of a synthetic Hall system, Nat. Phys. 16, 1017 (2020).
1.
V. Makhalov, T. Satoor, A. Evrard, T. Chalopin, R. Lopes, and S. Nascimbene, Probing Quantum Criticality and Symmetry Breaking at the Microscopic Level, Phys. Rev. Lett. 123, 120601 (2019).
1.
A. Evrard, V. Makhalov, T. Chalopin, L. A. Sidorenkov, J. Dalibard, R. Lopes, and S. Nascimbene, Enhanced Magnetic Sensitivity with Non-Gaussian Quantum Fluctuations, Phys. Rev. Lett. 122, 173601 (2019).
1.
T. Chalopin, V. Makhalov, C. Bouazza, A. Evrard, A. Barker, M. Lepers, J.-F. Wyart, O. Dulieu, J. Dalibard, R. Lopes, and S. Nascimbene, Anisotropic light shift and magic polarization of the intercombination line of dysprosium atoms in a far-detuned dipole trap, Phys. Rev. A 98, 040502 (2018).
1.
T. Chalopin, C. Bouazza, A. Evrard, V. Makhalov, D. Dreon, J. Dalibard, L. A. Sidorenkov, and S. Nascimbene, Quantum-enhanced sensing using non-classical spin states of a highly magnetic atom, Nat Commun 9, 4955 (2018).
1.
D. Dreon, L. A. Sidorenkov, C. Bouazza, W. Maineult, J. Dalibard, and S. Nascimbene, Optical cooling and trapping of highly magnetic atoms: the benefits of a spontaneous spin polarization, J. Phys. B: At. Mol. Opt. Phys. 50, 065005 (2017).
1.
H. Li, J.-F. Wyart, O. Dulieu, S. Nascimbène, and M. Lepers, Optical Trapping of Ultracold Dysprosium Atoms: Transition Probabilities, Dynamic Dipole Polarizabilities and van Der Waals C 6 Coefficients, J. Phys. B: At. Mol. Opt. Phys. 50, 014005 (2017).
1.
S. Nascimbene, N. Goldman, N. R. Cooper, and J. Dalibard, Dynamic Optical Lattices of Subwavelength Spacing for Ultracold Atoms, Phys. Rev. Lett. 115, 140401 (2015).
1.
S. Nascimbène, Realizing one-dimensional topological superfluids with ultracold atomic gases, J. Phys. B: At. Mol. Opt. Phys. 46, 134005 (2013).