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Giant anisotropic photocurrent modulated by strain in type-II Weyl semimetal Td-MoTe2

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arxiv 2111.10604 v1 pith:UW6S2VO5 submitted 2021-11-20 cond-mat.mtrl-sci cond-mat.mes-hall

Giant anisotropic photocurrent modulated by strain in type-II Weyl semimetal Td-MoTe2

classification cond-mat.mtrl-sci cond-mat.mes-hall
keywords photocurrentstraintransportdirectionpropertiesalongapplieddevice
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We build a Cu-MoTe2-Cu device model and use first-principles density functional theory to study the transport properties of single-layer Td-MoTe2. We obtained the effect of strain on the energy band structure, transport properties, and photocurrent. The strain-induced photocurrent shows an anisotropy that reflects the modulation of the energy bands, including the Weyl point, by strain. The photocurrent can be suppressed to almost zero when the strain is applied along the vacuum direction. In contrast, the photocurrent can be significantly increased when the strain is applied along the transport direction. The transport properties and magnitude of the photocurrent in the MoTe2-based device can be effectively modulated by adjusting the strength and direction of the strain.

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