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Medium-induced Interaction Between Impurities in a Bose-Einstein Condensate

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arxiv 2303.01916 v2 pith:ZVST7GC7 submitted 2023-03-03 cond-mat.quant-gas

classification cond-mat.quant-gas
keywords condensateimpuritiesinducedinteractionpotentialbose-einsteindistancesfind
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We consider two heavy particles immersed in a Bose-Einstein condensate in three dimensions and compute their mutual interaction induced by excitations of the medium. For an ideal Bose gas, the induced interaction is Newtonian up to a shift in distance which depends on the coupling strength between impurities and Bosons. For a real BEC, we find that on short distances, the induced potential is dominated by three-body physics of a single Boson bound to the impurities, leading to an Efimov potential. At large distances of the order of the healing length, a Yukawa potential emerges instead. In particular, we find that both regimes are realized for all impurity-boson couplings and determine the corresponding crossover scales. The transition from the real to the ideal condensate at low gas parameters is investigated.

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