Crossover of Ising- to Rashba-Type Superconductivity in Epitaxial Bi<sub>2</sub>Se<sub>3</sub>/Monolayer NbSe<sub>2</sub> Heterostructures
ORAL
Abstract
When two different materials are brought together, the resultant interface between them often shows unexpected quantum phenomena. For example, the interface between a topological insulator (TI) and an s-wave superconductor can host an unusual form of superconductivity known as topological superconductivity. In this work, we grew the Bi2Se3/monolayer NbSe2 heterostructures with different Bi2Se3 thicknesses using molecular beam epitaxy. We found that the gapless Dirac surface states are formed when the Bi2Se3 thickness is greater than 3 quintuple layers (QLs). Moreover, we observed the Rashba-type bulk conduction bands for the Bi2Se3 thickness greater than 2 QLs. Our observations are well interpreted by the first-principles calculations. By performing magneto-transport measurements, we found that the in-plane upper critical magnetic field of the superconductivity in Bi2Se3/monolayer NbSe2 heterostructures is greatly suppressed when the Rashba bands emerge, indicating the occurrence of a crossover from Ising- to Rashba-type pairings. Our success in the synthesis of Bi2Se3/monolayer NbSe2 heterostructures and the demonstration of the crossover from Ising- to Rashba-type superconductivity in these heterostructures provide more impetus for exploring the topological superconductivity in TI/superconductor heterostructures.
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Publication: None
Presenters
Hemian Yi
Pennsylvania State University
Authors
Hemian Yi
Pennsylvania State University
Lunhui Hu
The Pennsylvania State University, Pennsylvania State University, University of California, San Diego, Department of Physics, The Pennsylvania State University
Run Xiao
Pennsylvania State University
Yuanxi Wang
University of North Texas
Jiaqi Cai
University of Washington
Denielle R. Hickey
Pennsylvania State University
Chengye Dong
Pennsylvania State University
Yifan Zhao
Pennsylvania State University, The Pennsylvania State University
Lingjie Zhou
Pennsylvania State University, The Pennsylvania State University
Ruoxi Zhang
Pennsylvania State University
Anthony R Richardella
Pennsylvania State University
Joshua A Robinson
Pennsylvania State University
Moses H Chan
Pennsylvania State University
Xiaodong Xu
University of Washington
Nitin Samarth
Pennsylvania State University
Chaoxing Liu
Pennsylvania State University, Department of physics, Pennsylvania State University