Impact of domain disorder on optoelectronic properties of layered semimetal MoTe2

Author:

Singh Maanwinder P,Kiemle Jonas,Ozdemir Ilkay,Zimmermann Philipp,Taniguchi Takashi,Watanabe KenjiORCID,Burghard Marko,Üzengi Aktürk OlcayORCID,Kastl ChristophORCID,Holleitner Alexander W

Abstract

Abstract We address the impact of crystal phase disorder on the generation of helicity-dependent photocurrents in layered MoTe2, which is one of the van der Waals materials to realize the topological type-II Weyl semimetal phase. Using scanning photocurrent microscopy, we spatially probe the phase transition and its hysteresis between the centrosymmetric, monoclinic 1Tʹ phase to the symmetry-broken, orthorhombic T d phase as a function of temperature. We find a highly disordered photocurrent response in the intermediate temperature regime. Moreover, we demonstrate that helicity-dependent and ultrafast photocurrents in MoTe2 arise most likely from a local breaking of the electronic symmetries. Our results highlight the prospects of local domain morphologies and ultrafast relaxation dynamics on the optoelectronic properties of low-dimensional van der Waals circuits.

Funder

Japan Society for the Promotion of Science

Ministry of Education, Culture, Sports, Science and Technology

Deutsche Forschungsgemeinschaft

Publisher

IOP Publishing

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science,General Chemistry

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