Quasiparticle properties of long-range impurities in a Bose condensate
T. Alper Yo\u{g}urt, Matthew T. Eiles

TL;DR
This paper investigates how long-range impurity interactions affect Bose polarons, revealing that a universal description persists for weak to intermediate couplings, but quasiparticle properties are suppressed with increasing impurity volume.
Contribution
It introduces a theoretical framework combining the coherent state Ansatz and Gross-Pitaevskii theory to analyze long-range impurity effects in Bose condensates, extending beyond short-range interaction models.
Findings
Effective mass derived analytically for contact interactions.
Numerical computation of effective mass for long-range impurities.
Quasiparticle weight diminishes as impurity volume increases.
Abstract
An impurity immersed in a Bose condensate can form a quasiparticle known as a Bose polaron. When the impurity-boson interaction is short-ranged, the quasiparticle properties can be characterized in terms of the impurity-boson scattering length and the condensate coherence length , a universal description that remains valid irrespective of the bath density . Long-ranged interactions -- such as provided by Rydberg or ionic impurities -- introduce an effective interaction range as the third length scale. These competing length scales raise the question of whether a universal description remains valid across different bath densities. In this study, we discuss the quasiparticle nature of long-range impurities and its dependence on the length scales , , and . We employ two complementary theories -- the coherent…
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Taxonomy
TopicsCold Atom Physics and Bose-Einstein Condensates · Quantum, superfluid, helium dynamics · Quantum and electron transport phenomena
