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针对超流⁴He和费米气体对朗道声子-旋子理论的再探讨

Landau Phonon-Roton Theory Revisited for Superfluid ^{4}He and Fermi Gases.

作者信息

Castin Yvan, Sinatra Alice, Kurkjian Hadrien

机构信息

Laboratoire Kastler Brossel, ENS-PSL, CNRS, Sorbonne Universités, Collège de France, 75005 Paris, France.

TQC, Universiteit Antwerpen, Universiteitsplein 1, B-2610 Antwerp, Belgium.

出版信息

Phys Rev Lett. 2017 Dec 29;119(26):260402. doi: 10.1103/PhysRevLett.119.260402. Epub 2017 Dec 26.

Abstract

Liquid helium and spin-1/2 cold-atom Fermi gases both exhibit in their superfluid phase two distinct types of excitations, gapless phonons and gapped rotons or fermionic pair-breaking excitations. In the long wavelength limit, revising and extending the theory of Landau and Khalatnikov initially developed for helium [Zh. Exp. Teor. Fiz. 19, 637 (1949)], we obtain universal expressions for three- and four-body couplings among these two types of excitations. We calculate the corresponding phonon damping rates at low temperature and compare them to those of a pure phononic origin in high-pressure liquid helium and in strongly interacting Fermi gases, paving the way to experimental observations.

摘要

液氦和自旋为1/2的冷原子费米气体在其超流相中均展现出两种不同类型的激发:无能隙声子和有能隙的旋子旋子或费米子对破缺激发。在长波极限下,我们修正并扩展了最初为氦气发展的朗道和哈拉特尼科夫理论[《实验与理论物理杂志》19, 637 (1949)],得到了这两种激发之间三体和四体耦合的通用表达式。我们计算了低温下相应的声子阻尼率,并将其与高压液氦和强相互作用费米气体中纯声子起源的阻尼率进行比较,为实验观测铺平了道路。

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