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arxiv: 1811.12939 · v2 · pith:G6ICMRYKnew · submitted 2018-11-30 · ❄️ cond-mat.quant-gas · quant-ph

High-Contrast Interference of Ultracold Fermions

classification ❄️ cond-mat.quant-gas quant-ph
keywords correlationsatomsfermionsindistinguishableinterferencenumberpairsparticles
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Many-body interference between indistinguishable particles can give rise to strong correlations rooted in quantum statistics. We study such Hanbury Brown-Twiss-type correlations for number states of ultracold massive fermions. Using deterministically prepared $^6$Li atoms in optical tweezers, we measure momentum correlations using a single-atom sensitive time-of-flight imaging scheme. The experiment combines on-demand state preparation of highly indistinguishable particles with high-fidelity detection, giving access to two- and three-body correlations in fields of fixed fermionic particle number. We find that pairs of atoms interfere with a contrast close to 80%. We show that second-order density correlations arise from contributions from all two-particle pairs and detect intrinsic third-order correlations.

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