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纯净多带超导体中的光学响应理论。

Theory of optical responses in clean multi-band superconductors.

作者信息

Ahn Junyeong, Nagaosa Naoto

机构信息

Department of Physics, Harvard University, Cambridge, MA, USA.

RIKEN Center for Emergent Matter Science (CEMS), Wako, Saitama, Japan.

出版信息

Nat Commun. 2021 Mar 12;12(1):1617. doi: 10.1038/s41467-021-21905-x.

Abstract

Electromagnetic responses in superconductors provide valuable information on the pairing symmetry as well as physical quantities such as the superfluid density. However, at the superconducting gap energy scale, optical excitations of the Bogoliugov quasiparticles are forbidden in conventional Bardeen-Cooper-Schrieffer superconductors when momentum is conserved. Accordingly, far-infrared optical responses have been understood in the framework of a dirty-limit theory by Mattis and Bardeen for over 60 years. Here we show, by investigating the selection rules imposed by particle-hole symmetry and unitary symmetries, that intrinsic momentum-conserving optical excitations can occur in clean multi-band superconductors when one of the following three conditions is satisfied: (i) inversion symmetry breaking, (ii) symmetry protection of the Bogoliubov Fermi surfaces, or (iii) simply finite spin-orbit coupling with unbroken time reversal and inversion symmetries. This result indicates that clean-limit optical responses are common beyond the straightforward case of broken inversion symmetry. We apply our theory to optical responses in FeSe, a clean multi-band superconductor with inversion symmetry and significant spin-orbit coupling. This result paves the way for studying clean-limit superconductors through optical measurements.

摘要

超导体中的电磁响应提供了有关配对对称性以及诸如超流密度等物理量的有价值信息。然而,在超导能隙能量尺度下,当动量守恒时,传统的巴丁 - 库珀 - 施里弗超导体中玻戈留波夫准粒子的光学激发是被禁止的。因此,在超过60年的时间里,远红外光学响应一直是在马蒂斯和巴丁的脏极限理论框架内被理解的。在这里,我们通过研究粒子 - 空穴对称性和幺正对称性所施加的选择规则表明,当满足以下三个条件之一时,在干净的多带超导体中可以发生本征动量守恒光学激发:(i)宇称破缺,(ii)玻戈留波夫费米面的对称性保护,或(iii)简单地具有有限自旋 - 轨道耦合且时间反演和宇称对称性未破缺。这一结果表明,干净极限光学响应在除了简单的宇称破缺情况之外是普遍存在的。我们将我们的理论应用于FeSe(一种具有宇称对称性和显著自旋 - 轨道耦合的干净多带超导体)的光学响应。这一结果为通过光学测量研究干净极限超导体铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74b5/7954819/97a2a84b98b6/41467_2021_21905_Fig1_HTML.jpg

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