Bulletin of the American Physical Society
APS March Meeting 2019
Volume 64, Number 2
Monday–Friday, March 4–8, 2019; Boston, Massachusetts
Session K05: Topological Superconductivity: Fe-based Materials
8:00 AM–11:00 AM,
Wednesday, March 6, 2019
BCEC
Room: 108
Sponsoring
Unit:
DMP
Chair: Qimin Yan, Temple Univ
Abstract: K05.00004 : Topological Vortex Phase Transitions in Iron-Based Superconductors
9:00 AM–9:12 AM
Presenter:
Lunhui Hu
(University of California, San Diego)
Authors:
Shengshan Qin
(Kavli Institute of Theoretical Sciences)
Lunhui Hu
(University of California, San Diego)
Xianxin Wu
(Institute for Theoretical Physics and Astrophysics, Julius-Maximilians University of Wurzburg, Am Hubland, D-97074 Wurzburg, Germany)
Xia Dai
(Key Laboratory of Aperture Array and Space Application, Hefei, 230088, China)
Congcong Le
(Kavli Institute of Theoretical Sciences)
Chen Fang
(Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China)
Fu-Chun Zhang
(Kavli Institute of Theoretical Sciences)
Jiangping Hu
(Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China)
protected by the existence of a three dimensional(3D) strong topological insulator(TI), we show that there are two additional phases as iron-based superconductors can be doped superconducting 3D weak topological insulators(3DWTI), a series of two dimensional (2D) topological insulators sticked along the third direction weakly. The vortex bound states of a superconducting 3DWTI, unlike in a 3D strong topological insulator, exhibit two different types of quantum states: (1) a robust nodal superconducting phase with pairs of bulk Majorana zero modes; (2) a full-gap topologically nontrivial superconducting phase, which has single vortex end MZM in a certain range of doping level. The recently observed zero bias peak in the vortex of (Li$_{0.8}$Fe$_{0.2}$)OHFeSe belongs to the second case. We predict that some iron-based superconductors can be 3DWTIs of the first case, namely, their vortex states are quasi one-dimensional topological nodal superconductors.
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