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Fate of an impurity strongly interacting with a thermal Bose gas

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arxiv 2508.06493 v1 pith:4QGN5KNV submitted 2025-08-08 cond-mat.quant-gas physics.atom-phquant-ph

Fate of an impurity strongly interacting with a thermal Bose gas

classification cond-mat.quant-gas physics.atom-phquant-ph
keywords bathbosetemperatureimpurityimpurity-bathinteractionsapproachesbehavior
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We spectroscopically study mobile impurities immersed in a homogeneous bosonic bath (a box-trapped Bose gas), varying the bath temperature and the strength of impurity-bath interactions. We compare our results to those for a quasipure Bose-Einstein condensate (BEC), and find that for strong impurity-bath interactions, the spectra narrow with increasing temperature, while the impurity energy shift is suppressed. Near the critical temperature for condensation, many-body effects still play an important role, and only for a nondegenerate bath, the system approaches the classical Boltzmann-gas behavior. The key spectral features are reproduced within the theory of an ideal Bose polaron.

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  1. Polaronic hybridization of atoms, dimers and trimers in a Bose-Einstein condensate

    cond-mat.quant-gas 2026-06 unverdicted novelty 8.0

    Observation of polaronic hybrid states (superpositions of bare atom, NaK dimer, and Na2K trimer) in a 40K impurity in 23Na BEC via RF spectroscopy, captured by a parameter-free three-level model.