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Polarons in supersolids: path-integral treatment of an impurity in a one-dimensional dipolar supersolid

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arxiv 2407.03505 v4 pith:2UNVCLKR submitted 2024-07-03 cond-mat.quant-gas

classification cond-mat.quant-gas
keywords polaronsupersoliddipolarimpurityone-dimensionalphaseaccurateapproach
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The supersolid phase of a dipolar Bose-Einstein condensate has an intriguing excitation spectrum displaying a band structure. Here, the dressing of an impurity in a one-dimensional dipolar supersolid with the excitations of the supersolid is studied. The ground-state energy of the supersolid polaron is calculated using a variational path integral approach, which obtained accurate results for other polaron systems within the Bogoliubov and Fr\"ohlich approximations. A divergence is observed at the superfluid-supersolid phase transition. The polaron radius is also computed, showing that as a function of impurity-atom interactions, the polaron can become localized to a single droplet, behaving like a small solid-state polaron.

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  1. Lattice Bose polarons at strong coupling and quantum criticality

    cond-mat.quant-gas 2024-12 conditional novelty 7.0 of 10

    A strong-coupling ladder theory for an impurity in a Bose-Hubbard bath near the MI-SF critical point predicts a cusp and a new polaron branch, with energies in good agreement with quantum Monte Carlo.

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