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Photoinduced valley-polarized current of layered MoS2 by electric tuning

机译:电调谐对层状MoS2的光诱导谷极化电流

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摘要

A photoinduced current of a layered MoS2-based transistor is studied from first-principles. Under the illumination of circular polarized light, a valley-polarized current is generated, which can be tuned by the gate voltage. For monolayer MoS2, the valley-polarized spin-up (down) electron current at K (K') points is induced by the right (left) circular polarized light. The valley polarization is found to reach +1.0 (-1.0) for the valley current that carried such a K (K') index. For bilayer MoS2, the spin-up (down) current can be induced at both K and K' valleys by the right (left) circular light. In contrast to monolayer MoS2, the photoinduced valley polarization shows asymmetric behavior upon reversal of the gate voltage. Our results show that the valley polarization of the photoinduced current can be modulated by the circular polarized light and the gate voltage. All the results can be well understood using a simple kp model.
机译:从第一性原理研究了基于MoS2的分层晶体管的光感应电流。在圆偏振光的照射下,产生了谷极极化电流,该电流可以通过栅极电压进行调节。对于单层MoS2,右(左)圆偏振光在K(K')点处产生谷极化自旋(向下)电子电流。对于带有这样的K(K')指数的波谷电流,波谷极化被发现达到+1.0(-1.0)。对于双层MoS2,右(左)圆形光可在K和K'谷处感应出向上旋转(向下)电流。与单层MoS2相比,光致谷底极化在栅极电压反转时显示出不对称行为。我们的结果表明,光感应电流的谷底极化可以通过圆极化光和栅极电压进行调制。使用简单的kp模型可以很好地理解所有结果。

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