An Effective Field Description for Fermionic Superfluids

W. V. Alphen, N. Verhelst, G. Lombardi, S. Klimin, J. Tempère
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引用次数: 1

Abstract

In this chapter, we present the details of the derivation of an effective field theory (EFT) for a Fermi gas of neutral dilute atoms and apply it to study the structure of both vortices and solitons in superfluid Fermi gases throughout the BEC-BCS crossover. One of the merits of the effective field theory is that, for both applications, it can provide some form of analytical results. For one-dimensional solitons, the entire structure can be determined analytically, allowing for an easy analysis of soliton properties and dynamics across the BEC-BCS interaction domain. For vortices on the other hand, a variational model has to be proposed. The variational parameter can be determined analytically using the EFT, allowing to also study the vortex structure (variationally) throughout the BEC-BCS crossover.
费米子超流体的有效场描述
在本章中,我们详细介绍了中性稀原子费米气体的有效场论(EFT)的推导,并将其应用于研究超流体费米气体在bc - bcs交叉过程中的涡旋和孤子结构。有效场论的优点之一是,对于两种应用,它都能提供某种形式的分析结果。对于一维孤子,整个结构可以解析确定,从而可以轻松地分析跨bc - bcs相互作用域的孤子性质和动力学。另一方面,对于涡旋,必须提出变分模型。变分参数可以使用EFT解析确定,也允许研究整个BEC-BCS交叉的涡结构(变分)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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