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Transport evidence of asymmetric spin-orbit coupling in few-layer superconducting 1Td-MoTe2.


ABSTRACT: Two-dimensional transition metal dichalcogenides MX2 (M = W, Mo, Nb, and X = Te, Se, S) with strong spin-orbit coupling possess plenty of novel physics including superconductivity. Due to the Ising spin-orbit coupling, monolayer NbSe2 and gated MoS2 of 2H structure can realize the Ising superconductivity, which manifests itself with in-plane upper critical field far exceeding Pauli paramagnetic limit. Surprisingly, we find that a few-layer 1Td structure MoTe2 also exhibits an in-plane upper critical field which goes beyond the Pauli paramagnetic limit. Importantly, the in-plane upper critical field shows an emergent two-fold symmetry which is different from the isotropic in-plane upper critical field in 2H transition metal dichalcogenides. We show that this is a result of an asymmetric spin-orbit coupling in 1Td transition metal dichalcogenides. Our work provides transport evidence of a new type of asymmetric spin-orbit coupling in transition metal dichalcogenides which may give rise to novel superconducting and spin transport properties.

SUBMITTER: Cui J 

PROVIDER: S-EPMC6499809 | biostudies-literature | 2019 May

REPOSITORIES: biostudies-literature

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Transport evidence of asymmetric spin-orbit coupling in few-layer superconducting 1T<sub>d</sub>-MoTe<sub>2</sub>.

Cui Jian J   Li Peiling P   Zhou Jiadong J   He Wen-Yu WY   Huang Xiangwei X   Yi Jian J   Fan Jie J   Ji Zhongqing Z   Jing Xiunian X   Qu Fanming F   Cheng Zhi Gang ZG   Yang Changli C   Lu Li L   Suenaga Kazu K   Liu Junwei J   Law Kam Tuen KT   Lin Junhao J   Liu Zheng Z   Liu Guangtong G  

Nature communications 20190503 1


Two-dimensional transition metal dichalcogenides MX<sub>2</sub> (M = W, Mo, Nb, and X = Te, Se, S) with strong spin-orbit coupling possess plenty of novel physics including superconductivity. Due to the Ising spin-orbit coupling, monolayer NbSe<sub>2</sub> and gated MoS<sub>2</sub> of 2H structure can realize the Ising superconductivity, which manifests itself with in-plane upper critical field far exceeding Pauli paramagnetic limit. Surprisingly, we find that a few-layer 1T<sub>d</sub> structur  ...[more]

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