Effect of Population Imbalance on Vortex Mass in Superfluid Fermi Gases

Fuente: arXiv
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Main Authors: Levrouw, Lucas, Takeuchi, Hiromitsu, Tempere, Jacques
Format: Preprint
Published: 2025
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author Levrouw, Lucas
Takeuchi, Hiromitsu
Tempere, Jacques
author_facet Levrouw, Lucas
Takeuchi, Hiromitsu
Tempere, Jacques
contents One of the fundamental parameters associated with quantized vortices in superfluids is the vortex mass, which is the inertia of a vortex. As of yet, this mass has not been observed in a superfluid. However, ultracold Fermi gases provide a promising platform in which recently much experimental progress was made, offering tunability of the interaction as well as control on the single-vortex level. Not only can the scattering length be freely tuned, allowing exploration of the BEC-BCS crossover, but also an imbalance between different pseudospin states can be introduced. We study the effect of introducing this imbalance on the vortex mass, using a method based on an effective field theory for superfluid Fermi gases. We find that it is crucial to consider the imbalance in conjunction with nonzero temperatures; at some temperatures, the vortex mass is significantly enhanced while at others, the vortex mass is diminished. This pronounced temperature dependence highlights the need for careful tuning of experimental conditions and identifies favorable parameter regimes in which the vortex mass is likely to be observed.
format Preprint
id arxiv_https___arxiv_org_abs_2512_22099
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Effect of Population Imbalance on Vortex Mass in Superfluid Fermi Gases
Levrouw, Lucas
Takeuchi, Hiromitsu
Tempere, Jacques
Quantum Gases
One of the fundamental parameters associated with quantized vortices in superfluids is the vortex mass, which is the inertia of a vortex. As of yet, this mass has not been observed in a superfluid. However, ultracold Fermi gases provide a promising platform in which recently much experimental progress was made, offering tunability of the interaction as well as control on the single-vortex level. Not only can the scattering length be freely tuned, allowing exploration of the BEC-BCS crossover, but also an imbalance between different pseudospin states can be introduced. We study the effect of introducing this imbalance on the vortex mass, using a method based on an effective field theory for superfluid Fermi gases. We find that it is crucial to consider the imbalance in conjunction with nonzero temperatures; at some temperatures, the vortex mass is significantly enhanced while at others, the vortex mass is diminished. This pronounced temperature dependence highlights the need for careful tuning of experimental conditions and identifies favorable parameter regimes in which the vortex mass is likely to be observed.
title Effect of Population Imbalance on Vortex Mass in Superfluid Fermi Gases
topic Quantum Gases
url https://arxiv.org/abs/2512.22099