Quantized bound states around a vortex in anisotropic superconductors

IF 6.4 1区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Science China Physics, Mechanics & Astronomy Pub Date : 2024-05-14 DOI:10.1007/s11433-023-2353-6
Ke Xiang, Da Wang, Qiang-Hua Wang
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Abstract

The bound states around a vortex in anisotropic superconductors is a longstanding yet important issue. In this work, we develop a variational theory on the basis of the Andreev approximation to obtain the energy levels and wave functions of the low-energy quantized bound states in superconductors with anisotropic pairing on arbitrary Fermi surface. In the case of circular Fermi surface, the effective Schrödinger equation yielding the bound state energies gets back to the theory proposed by Volovik and Kopnin many years ago. Our generalization here enables us to prove the equidistant energy spectrum inside a vortex in a broader class of superconductors. More importantly, we are now able to obtain the wave functions of these bound states by projecting the quasiclassical wave function on the eigenmodes of the effective Schrödinger equation, going beyond the quasiclassical Eilenberger results, which, as we find, are sensitive to the scattering rate. For the case of isotropic Fermi surface, the spatial profile of the low-energy local density of states is dominated near the vortex center and elongates along the gap antinode directions, in addition to the ubiquitous Friedel oscillation arising from the quantum inteference neglected in the Eilenberger theory. Moreover, as a consequence of the pairing anisotropy, the quantized wave functions develop a peculiar distribution of winding number, which reduces stepwise towards the vortex center. Our work provides a flexible way to study the vortex bound states in the future.

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各向异性超导体中涡旋周围的量子化束缚态
各向异性超导体中涡旋周围的束缚态是一个长期而重要的问题。在这项工作中,我们在安德烈耶夫近似的基础上发展了一种变分理论,以获得在任意费米面上具有各向异性配对的超导体中低能量子化束缚态的能级和波函数。在圆形费米面的情况下,得到束缚态能量的有效薛定谔方程回到了沃洛维克和科普宁多年前提出的理论。我们在此进行的概括使我们能够在更广泛的超导体类别中证明涡旋内部的等距能谱。更重要的是,我们现在能够通过将准经典波函数投影到有效薛定谔方程的特征模上来获得这些束缚态的波函数,这超越了准经典艾伦伯格结果,因为我们发现,艾伦伯格结果对散射率很敏感。在各向同性费米面的情况下,除了艾伦伯格理论中忽略的量子干涉引起的无处不在的弗里德尔振荡之外,低能局部态密度的空间轮廓在涡旋中心附近占主导地位,并沿间隙反节点方向拉长。此外,由于配对的各向异性,量子化波函数形成了一种特殊的缠绕数分布,并向涡旋中心逐步减少。我们的工作为今后研究涡旋束缚态提供了一种灵活的方法。
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来源期刊
Science China Physics, Mechanics & Astronomy
Science China Physics, Mechanics & Astronomy PHYSICS, MULTIDISCIPLINARY-
CiteScore
10.30
自引率
6.20%
发文量
4047
审稿时长
3 months
期刊介绍: Science China Physics, Mechanics & Astronomy, an academic journal cosponsored by the Chinese Academy of Sciences and the National Natural Science Foundation of China, and published by Science China Press, is committed to publishing high-quality, original results in both basic and applied research. Science China Physics, Mechanics & Astronomy, is published in both print and electronic forms. It is indexed by Science Citation Index. Categories of articles: Reviews summarize representative results and achievements in a particular topic or an area, comment on the current state of research, and advise on the research directions. The author’s own opinion and related discussion is requested. Research papers report on important original results in all areas of physics, mechanics and astronomy. Brief reports present short reports in a timely manner of the latest important results.
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