Publication
Title
Phononic collective excitations in superfluid Fermi gases at nonzero temperatures
Author
Abstract
We study the phononic collective modes of the pairing field and their corresponding signature in both the order-parameter and density response functions for a superfluid Fermi gas at all temperatures below Tc in the collisionless regime. The spectra of collective modes are calculated within the Gaussian pair fluctuation approximation. We deal with the coupling of these modes to the fermionic continuum of quasiparticle-quasihole excitations by performing a nonperturbative analytic continuation of the pairing field propagator. At low temperature, we recover the known exponential temperature dependence of the damping rate and velocity shift of the Anderson-Bogoliubov branch. In the vicinity of Tc, we find analytically a weakly damped collective mode whose velocity vanishes with a critical exponent of 1/2, and whose quality factor diverges logarithmically with Tc−T, thereby clarifying an existing debate in the literature [Andrianov and Popov, Theor. Math. Phys. 28, 829 (1976); Ohashi and Takada, J. Phys. Soc. Jpn. 66, 2437 (1997)]. A transition between these two phononic branches is visible at intermediary temperatures, particularly in the BCS limit where the phase-phase response function displays two maxima.
Language
English
Source (journal)
Physical review A
Publication
2019
DOI
10.1103/PHYSREVA.100.063634
Volume/pages
100 :6 (2019) , 22 p.
Article Reference
063634
ISI
000504428800017
Medium
E-only publicatie
Full text (Publisher's DOI)
Full text (open access)
Full text (publisher's version - intranet only)
UAntwerpen
Faculty/Department
Research group
Project info
PEGASUS-2: [PEGASUS]², giving wings to your career
Superfluidity and superconductivity in multicomponent quantum condensates.
Publication type
Subject
Affiliation
Publications with a UAntwerp address
External links
Web of Science
Record
Identifier
Creation 22.01.2020
Last edited 29.12.2024
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