Multifold Majorana corner modes arising from multiple pairs of helical edge states

Fuente: arXiv
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Autori principali: Yin, Zhiwei, Li, Haoshu, Yan, Zhongbo, Wan, Shaolong
Natura: Preprint
Pubblicazione: 2024
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author Yin, Zhiwei
Li, Haoshu
Yan, Zhongbo
Wan, Shaolong
author_facet Yin, Zhiwei
Li, Haoshu
Yan, Zhongbo
Wan, Shaolong
contents Quantum spin Hall insulators with a pair of helical edge states and proximity-induced superconductivity have been shown to support second-order topological superconductors with Majorana corner modes. As the Majorana corner modes are originated from the helical edge states of the quantum spin Hall insulators, whether quantum spin Hall insulators with multiple pairs of helical edge states and proximity-induced superconductivity can give rise to second-order topological superconductors with multifold Majorana corner modes is an interesting question to address. In this work, we consider a quantum spin Hall insulator with two pairs of helical edge states. We find robust twofold Majorana corner modes can be achieved when the helical edge states are gapped by a combined action of a magnetic exchange field and an $s$-wave pairing, or an $s+p$ mixed-parity pairing. The stability of two Majorana zero modes per corner under the action of magnetic exchange fields is attributed to the protection from the chiral symmetry. Our study reveals that heterostructures composed of superconductors and quantum spin Hall insulators with multiple pairs of helical edge states could serve as a platform to pursue multifold Majorana corner modes.
format Preprint
id arxiv_https___arxiv_org_abs_2409_11791
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Multifold Majorana corner modes arising from multiple pairs of helical edge states
Yin, Zhiwei
Li, Haoshu
Yan, Zhongbo
Wan, Shaolong
Mesoscale and Nanoscale Physics
Materials Science
Quantum Gases
Superconductivity
Quantum Physics
Quantum spin Hall insulators with a pair of helical edge states and proximity-induced superconductivity have been shown to support second-order topological superconductors with Majorana corner modes. As the Majorana corner modes are originated from the helical edge states of the quantum spin Hall insulators, whether quantum spin Hall insulators with multiple pairs of helical edge states and proximity-induced superconductivity can give rise to second-order topological superconductors with multifold Majorana corner modes is an interesting question to address. In this work, we consider a quantum spin Hall insulator with two pairs of helical edge states. We find robust twofold Majorana corner modes can be achieved when the helical edge states are gapped by a combined action of a magnetic exchange field and an $s$-wave pairing, or an $s+p$ mixed-parity pairing. The stability of two Majorana zero modes per corner under the action of magnetic exchange fields is attributed to the protection from the chiral symmetry. Our study reveals that heterostructures composed of superconductors and quantum spin Hall insulators with multiple pairs of helical edge states could serve as a platform to pursue multifold Majorana corner modes.
title Multifold Majorana corner modes arising from multiple pairs of helical edge states
topic Mesoscale and Nanoscale Physics
Materials Science
Quantum Gases
Superconductivity
Quantum Physics
url https://arxiv.org/abs/2409.11791