Multiple polaron quasiparticles with dipolar fermions in a bilayer geometry

Fuente: arXiv
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Autori principali: Tiene, A., Bracho, A. Tamargo, Parish, M. M., Levinsen, J., Marchetti, F. M.
Natura: Preprint
Pubblicazione: 2024
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author Tiene, A.
Bracho, A. Tamargo
Parish, M. M.
Levinsen, J.
Marchetti, F. M.
author_facet Tiene, A.
Bracho, A. Tamargo
Parish, M. M.
Levinsen, J.
Marchetti, F. M.
contents We study the Fermi polaron problem with dipolar fermions in a bilayer geometry, where a single dipolar particle in one layer interacts with a Fermi sea of dipolar fermions in the other layer. By evaluating the polaron spectrum, we obtain the appearance of a series of attractive branches when the distance between the layers diminishes. We relate these to the appearance of a series of bound two-dipole states when the interlayer dipolar interaction strength increases. By inspecting the orbital angular momentum component of the polaron branches, we observe an interchange of orbital character when system parameters such as the gas density or the interlayer distance are varied. Further, we study the possibility that the lowest energy two-body bound state spontaneously acquires a finite center of mass momentum when the density of fermions exceeds a critical value, and we determine the dominating orbital angular momenta that characterize the pairing. Finally, we propose to use the tunneling rate from and into an auxiliary layer as an experimental probe of the impurity spectral function.
format Preprint
id arxiv_https___arxiv_org_abs_2401_13228
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Multiple polaron quasiparticles with dipolar fermions in a bilayer geometry
Tiene, A.
Bracho, A. Tamargo
Parish, M. M.
Levinsen, J.
Marchetti, F. M.
Quantum Gases
We study the Fermi polaron problem with dipolar fermions in a bilayer geometry, where a single dipolar particle in one layer interacts with a Fermi sea of dipolar fermions in the other layer. By evaluating the polaron spectrum, we obtain the appearance of a series of attractive branches when the distance between the layers diminishes. We relate these to the appearance of a series of bound two-dipole states when the interlayer dipolar interaction strength increases. By inspecting the orbital angular momentum component of the polaron branches, we observe an interchange of orbital character when system parameters such as the gas density or the interlayer distance are varied. Further, we study the possibility that the lowest energy two-body bound state spontaneously acquires a finite center of mass momentum when the density of fermions exceeds a critical value, and we determine the dominating orbital angular momenta that characterize the pairing. Finally, we propose to use the tunneling rate from and into an auxiliary layer as an experimental probe of the impurity spectral function.
title Multiple polaron quasiparticles with dipolar fermions in a bilayer geometry
topic Quantum Gases
url https://arxiv.org/abs/2401.13228