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First and second sound of a unitary Fermi gas in highly oblate harmonic traps

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posted on 2024-07-11, 06:51 authored by Hui HuHui Hu, Paul DykePaul Dyke, Christopher ValeChristopher Vale, Xiaji LiuXiaji Liu
We theoretically investigate first and second sound modes of a unitary Fermi gas trapped in a highly oblate harmonic trap at finite temperatures. Following the idea by Stringari and co-workers (2010 Phys. Rev. Lett. 105 150402), we argue that these modes can be described by the simplified two-dimensional two-fluid hydrodynamic equations. Two possible schemes—sound wave propagation and breathing mode excitation—are considered. We calculate the sound wave velocities and discretized sound mode frequencies, as a function of temperature. We find that in both schemes, the coupling between first and second sound modes is large enough to induce significant density fluctuations, suggesting that second sound can be directly observed by measuring in situ density profiles. The frequency of the second sound breathing mode is found to be highly sensitive to the superfluid density.

Funding

ARC | FT130100815

ARC | DP140103231

ARC | DE140100647

ARC | FT120100034

ARC | DP130101807

ARC | DP140100637

Spin-orbit coupled quantum gases: understanding new generation materials with topological order : Australian Research Council (ARC) | DP140103231

Imbalanced superfluidity with cold atoms: a new way to understand unconventional superconductors and stellar superfluids : Australian Research Council (ARC) | FT130100815

Strongly repulsive ultracold atomic gases as a resource for quantum simulation : Australian Research Council (ARC) | DP140100637

History

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ISSN

1367-2630

Journal title

New Journal of Physics

Volume

16

Issue

8

Article number

article no. 083023

Pagination

083023-

Publisher

Institute of Physics

Copyright statement

Copyright © 2014 IOP Publishing Ltd and Deutsche Physikalische Gesellschaft. The published version of is reproduced under the terms of terms of the Creative Commons Attribution 3.0 license (http://creativecommons.org/licenses/by/3.0/). Any further distribution of this work must maintain attribution to the author(s) and the title of the work, journal citation and DOI.

Language

eng

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