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Two-Dimensional Programmable Tweezer Arrays of Fermions

Author(s): Yan, Zoe Z; Spar, Benjamin M; Prichard, Max L; Chi, Sungjae; Wei, Hao-Tian; et al

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dc.contributor.authorYan, Zoe Z-
dc.contributor.authorSpar, Benjamin M-
dc.contributor.authorPrichard, Max L-
dc.contributor.authorChi, Sungjae-
dc.contributor.authorWei, Hao-Tian-
dc.contributor.authorIbarra-García-Padilla, Eduardo-
dc.contributor.authorHazzard, Kaden RA-
dc.contributor.authorBakr, Waseem S-
dc.date.accessioned2024-11-20T20:20:19Z-
dc.date.available2024-11-20T20:20:19Z-
dc.date.issued2022-09-14en_US
dc.identifier.citationYan, Zoe Z, Spar, Benjamin M, Prichard, Max L, Chi, Sungjae, Wei, Hao-Tian, Ibarra-García-Padilla, Eduardo, Hazzard, Kaden RA, Bakr, Waseem S. (Two-Dimensional Programmable Tweezer Arrays of Fermions. Physical Review Letters, 129 (12), 10.1103/physrevlett.129.123201en_US
dc.identifier.issn0031-9007-
dc.identifier.urihttp://arks.princeton.edu/ark:/88435/pr1d795b3v-
dc.description.abstractWe prepare high-filling two-component arrays of tens of fermionic 6Li atoms in optical tweezers, with the atoms in the ground motional state of each tweezer. Using a stroboscopic technique, we configure the arrays in various two-dimensional geometries with negligible Floquet heating. A full spin- and density- resolved readout of individual sites allows us to postselect near-zero entropy initial states for fermionic quantum simulation. We prepare a correlated state in a two-by-two tunnel-coupled Hubbard plaquette, demonstrating all the building blocks for realizing a programmable fermionic quantum simulator.en_US
dc.languageenen_US
dc.relation.ispartofPhysical Review Lettersen_US
dc.rightsAuthor's manuscripten_US
dc.titleTwo-Dimensional Programmable Tweezer Arrays of Fermionsen_US
dc.typeJournal Articleen_US
dc.identifier.doidoi:10.1103/physrevlett.129.123201-
dc.date.eissued2022-09-14en_US
dc.identifier.eissn1079-7114-
pu.type.symplectichttp://www.symplectic.co.uk/publications/atom-terms/1.0/journal-articleen_US

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