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Main Authors: Chen, Yajiang, Chen, Ke-Ji, Zhu, Jia-Ji, Shanenko, A. A.
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2403.06232
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author Chen, Yajiang
Chen, Ke-Ji
Zhu, Jia-Ji
Shanenko, A. A.
author_facet Chen, Yajiang
Chen, Ke-Ji
Zhu, Jia-Ji
Shanenko, A. A.
contents Superconducting-proximity topological insulators (STIs) have garnered significant research attention over the past two decades. In this Letter, we demonstrate that a low-dimensional STI in the topological-nontrivial phase (TP) exhibits an interference-induced surface (boundary) superconductivity with the surface critical temperature $T_{cs}$ significantly higher than the bulk one $T_{cb}$. Such a surface superconductivity is built due to the interference of the scattering quasiparticle states, rather than due to the presence of the topological bound states (TBSs). As the system goes deeper into the TP, the surface exhibits a crossover from the interference- to TBS-induced phase, where the surface enhancement of superconductivity is governed by the TBSs. Our study unveils a substantial variation in the maximal $T_{cs}$ along this crossover, attaining values being twice the maximal bulk critical temperature of the STI. Beyond shedding light on the nature of surface superconductivity in STIs, our study introduces a tangible method for experimentally manipulating their critical superconducting temperatures.
format Preprint
id arxiv_https___arxiv_org_abs_2403_06232
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Emergence of Surface Superconductivity through Interference in Superconducting-proximity Topological Insulators
Chen, Yajiang
Chen, Ke-Ji
Zhu, Jia-Ji
Shanenko, A. A.
Superconductivity
Superconducting-proximity topological insulators (STIs) have garnered significant research attention over the past two decades. In this Letter, we demonstrate that a low-dimensional STI in the topological-nontrivial phase (TP) exhibits an interference-induced surface (boundary) superconductivity with the surface critical temperature $T_{cs}$ significantly higher than the bulk one $T_{cb}$. Such a surface superconductivity is built due to the interference of the scattering quasiparticle states, rather than due to the presence of the topological bound states (TBSs). As the system goes deeper into the TP, the surface exhibits a crossover from the interference- to TBS-induced phase, where the surface enhancement of superconductivity is governed by the TBSs. Our study unveils a substantial variation in the maximal $T_{cs}$ along this crossover, attaining values being twice the maximal bulk critical temperature of the STI. Beyond shedding light on the nature of surface superconductivity in STIs, our study introduces a tangible method for experimentally manipulating their critical superconducting temperatures.
title Emergence of Surface Superconductivity through Interference in Superconducting-proximity Topological Insulators
topic Superconductivity
url https://arxiv.org/abs/2403.06232