Bulletin of the American Physical Society
56th Annual Meeting of the APS Division of Atomic, Molecular and Optical Physics
Monday–Friday, June 16–20, 2025; Portland, Oregon
Session W03: Low Dimesional Physics
8:00 AM–9:12 AM,
Friday, June 20, 2025
Oregon Convention Center
Room: Portland Ballroom 252
Chair: Krzysztof Pawlowski, Center for Theoretical Physics of Polish Academy of Sciences
Abstract: W03.00001 : Exact Study of Finite-Well Impurity in One-Dimensional Bose Condensates
8:00 AM–8:12 AM
Presenter:
Taha Alper Yogurt
(Max Planck Institute for the Physics of Complex Systems)
Authors:
Taha Alper Yogurt
(Max Planck Institute for the Physics of Complex Systems)
Matthew T Eiles
(Max Planck Institute for the Physics of Complex Systems)
Here we explore the energy and the effective mass of a short-range polaron, modeled with a finite square well potential, in a one-dimensional condensate. We obtain the semi-analytical solution of the Gross-Pitaevskii equation —accounts for the density deformation around the impurity already at the mean-field level— for both attractive and repulsive finite well potentials. We calculate the energy and effective mass of the impurity as a function of the scattering length of the finite well potential, where the well width is much smaller than the condensate coherence length, thereby approximating a short-range polaron. For the repulsive potential, our energy results are in agreement with previous studies that model the impurity using a Dirac delta potential, both in the weak and strong impurity-bath coupling regimes. For the attractive potential, the polaron energy and effective mass converge to a finite value in the limit of infinite impurity-bath coupling, in contrast to the divergent behavior with the Dirac delta potential. This is attributed to the fact that the delta potential always supports a bound state, independent of the strength of effective repulsion of the cloud around the impurity, whereas the cloud effectively cancels the attractive finite well potential.
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