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Main Authors: Mei, Jiong, Jiang, Kun, Qin, Shengshan, Hu, Jiangping
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2402.16099
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_version_ 1866917767780761600
author Mei, Jiong
Jiang, Kun
Qin, Shengshan
Hu, Jiangping
author_facet Mei, Jiong
Jiang, Kun
Qin, Shengshan
Hu, Jiangping
contents Intrinsic Rashba spin-orbital coupling (SOC) can exist in centrosymmetric materials with local inversion symmetry breaking. Here we show that such a SOC can induce topological superconductivity together with an in-plane Zeeman field in planar Josephson junctions formed by the centrosymmetric materials. A single Majorana mode can be created at each end of the junction. We demonstrate this result in a model based on iron-based superconductors. We derive the necessary Fermi surface condition for the topological planar junction and calculate the topological phase diagram with respect to the in-plane Zeeman field and the phase difference between the two superconductors. We provide experimental characteristics for the topological superconductivity, including the differential conductance and the Fano factor tomography which can be measured in the scanning tunneling spectroscopy. Our study reveals that the centrosymmetric systems with local-inversion-symmetry breaking can serve as new platforms for the topological planar Josephson junctions, and help to find more experimentally feasible materials for the topological superconductors.
format Preprint
id arxiv_https___arxiv_org_abs_2402_16099
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Inversion-symmetric Electron Gases as New Platforms for Topological Planar Josephson Junctions
Mei, Jiong
Jiang, Kun
Qin, Shengshan
Hu, Jiangping
Superconductivity
Mesoscale and Nanoscale Physics
Intrinsic Rashba spin-orbital coupling (SOC) can exist in centrosymmetric materials with local inversion symmetry breaking. Here we show that such a SOC can induce topological superconductivity together with an in-plane Zeeman field in planar Josephson junctions formed by the centrosymmetric materials. A single Majorana mode can be created at each end of the junction. We demonstrate this result in a model based on iron-based superconductors. We derive the necessary Fermi surface condition for the topological planar junction and calculate the topological phase diagram with respect to the in-plane Zeeman field and the phase difference between the two superconductors. We provide experimental characteristics for the topological superconductivity, including the differential conductance and the Fano factor tomography which can be measured in the scanning tunneling spectroscopy. Our study reveals that the centrosymmetric systems with local-inversion-symmetry breaking can serve as new platforms for the topological planar Josephson junctions, and help to find more experimentally feasible materials for the topological superconductors.
title Inversion-symmetric Electron Gases as New Platforms for Topological Planar Josephson Junctions
topic Superconductivity
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2402.16099