Half-integer level shift of vortex bound states in an iron-based superconductor

被引:5
|
作者
Lingyuan Kong
Shiyu Zhu
Michał Papaj
Hui Chen
Lu Cao
Hiroki Isobe
Yuqing Xing
Wenyao Liu
Dongfei Wang
Peng Fan
Yujie Sun
Shixuan Du
John Schneeloch
Ruidan Zhong
Genda Gu
Liang Fu
Hong-Jun Gao
Hong Ding
机构
[1] Beijing National Laboratory for Condensed Matter Physics and Institute of Physics,School of Physical Sciences
[2] Chinese Academy of Sciences,Department of Physics
[3] University of Chinese Academy of Sciences,CAS Center for Excellence in Topological Quantum Computation
[4] Massachusetts Institute of Technology,Condensed Matter Physics and Materials Science Department
[5] University of Chinese Academy of Sciences,undefined
[6] Songshan Lake Materials Laboratory,undefined
[7] Brookhaven National Laboratory,undefined
来源
Nature Physics | 2019年 / 15卷
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摘要
Vortices in topological superconductors may host Majorana zero modes (MZMs), which have been proposed as the building blocks of fault-tolerant topological quantum computers. Recently, a new single-material platform with the potential for realizing MZMs has been discovered in iron-based superconductors, without involving hybrid semiconductor–superconductor structures. Here, we report a detailed scanning tunnelling spectroscopy study of a FeTe0.55Se0.45 single crystal and show that this material hosts two distinct classes of vortex. These differ by a half-integer level shift in the energy spectra of the vortex bound states. This level shift is directly tied to the presence or absence of a zero-bias conductance peak and also alters the ratios of higher energy levels from integer to half-odd-integer. Our model calculations fully reproduce the spectra of these two types of vortex bound state, suggesting the presence of regions with and without topological surface states, which coexist within the same crystal. Our findings provide strong evidence for the presence of MZMs in FeTe0.55Se0.45 and establish it as an excellent platform for further studies.
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页码:1181 / 1187
页数:6
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