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Observation of quasiparticle pair-production and quantum entanglement in atomic quantum gases quenched to an attractive interaction

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arxiv 2102.11215 v1 pith:4GN4QUHT submitted 2021-02-22 cond-mat.quant-gas physics.atom-phquant-ph

classification cond-mat.quant-gasphysics.atom-phquant-ph
keywords quantumatomicentanglementinteractionquasiparticlequasiparticlesspectrumattractive
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We report observation of quasiparticle pair-production and characterize quantum entanglement created by a modulational instability in an atomic superfluid. By quenching the atomic interaction to attractive and then back to weakly repulsive, we produce correlated quasiparticles and monitor their evolution in a superfluid through evaluating the in situ density noise power spectrum, which essentially measures a 'homodyne' interference between ground state atoms and quasiparticles of opposite momenta. We observe large amplitude growth in the power spectrum and subsequent coherent oscillations in a wide spatial frequency band within our resolution limit, demonstrating coherent quasiparticle generation and evolution. The spectrum is observed to oscillate below a quantum limit set by the Peres-Horodecki separability criterion of continuous-variable states, thereby confirming quantum entanglement between interaction quench-induced quasiparticles.

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    For a degenerate parametric amplifier coupled to a zero-temperature Markovian bath, the windowed-cosine entropy flux of the output vanishes at large times, while energy and photon number fluxes remain nonzero.

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