Enhanced valley splitting of WSe2 in twisted van der Waals WSe2/CrI3 heterostructures

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作者
Mei Ge
Han Wang
Jizheng Wu
Chen Si
Junfeng Zhang
Shengbai Zhang
机构
[1] School of Physics and Information Engineering,Department of Physics
[2] Shanxi Normal University,undefined
[3] Chemical Sciences Division,undefined
[4] Lawrence Berkeley National Laboratory,undefined
[5] School of Materials Science and Engineering,undefined
[6] Beihang University,undefined
[7] Applied Physics,undefined
[8] and Astronomy,undefined
[9] Rensselaer Polytechnic Institute,undefined
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摘要
Van der Waals (vdW) heterostructures composed of different two-dimensional (2D) materials offer an easily accessible way to combine properties of individual materials for applications. Owing to the discovery of a set of unanticipated physical phenomena, the twisted 2D vdW heterostructures have gained considerable attention recently. Here, we report enhanced valley splitting in twisted 2D vdW WSe2/CrI3 heterostructures. In particular, the splitting can be 1200% (or 5.18 meV) of the value for a non-twisted heterostructure. According to the k·p model, this value is equivalent to a ~20 T external magnetic field applied perpendicular to the 2D sheet. The thermodynamic stability of 2D vdW WSe2/CrI3 heterostructures, on the other hand, depends linearly on the interlayer twisting angle.
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