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Anisotropic ultrafast spin/valley dynamics in WTe2 films

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arxiv 2008.08785 v2 pith:FFAOGM6C submitted 2020-08-20 cond-mat.mtrl-sci cond-mat.mes-hall

Anisotropic ultrafast spin/valley dynamics in WTe2 films

classification cond-mat.mtrl-sci cond-mat.mes-hall
keywords spinvalleydynamicsultrafastanisotropicanisotropyfilmsrelaxation
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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WTe2 Weyl semimetal hosts the natural broken inversion symmetry and strong spin orbit coupling, making it promising for exotic spin/valley dynamics within a picosecond timescale. Here, we unveil an anisotropic ultrafast spin/valley dynamics in centimeter-scale, single-crystalline Td-WTe2 films using a femtosecond pump-probe technique at room temperature. We observe a transient (~0.8 ps) intra-valley transition and a subsequent polarization duration (~5 ps) during the whole spin/valley relaxation process. Furthermore, the relaxation exhibits the remarkable anisotropy of approximately six-fold and two-fold symmetries due to the intrinsic anisotropy along the crystalline orientation and the extrinsic matrix element effect, respectively. Our results offer a prospect for the ultrafast manipulation of spin/valleytronics in topological quantum materials for dissipationless high-speed spin/valleytronic devices.

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