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Origin of Nonlinear Circular Photocurrent in 2D Semiconductor MoS2

  • Yanchong Zhao
  • , Fengyu Chen
  • , Jing Liang
  • , Mohammad Saeed Bahramy
  • , Mingwei Yang
  • , Yao Guang
  • , Xiaomei Li
  • , Zheng Wei
  • , Jian Tang
  • , Jiaojiao Zhao
  • , Mengzhou Liao
  • , Cheng Shen
  • , Qinqin Wang
  • , Rong Yang
  • , Kenji Watanabe
  • , Takashi Taniguchi
  • , Zhiheng Huang
  • , Dongxia Shi
  • , Kaihui Liu
  • , Zhipei Sun
  • Ji Feng*, Luojun Du*, Guangyu Zhang*
*此作品的通讯作者
  • CAS - Institute of Physics
  • University of Chinese Academy of Sciences
  • Peking University
  • Collaborative Innovation Centre of Quantum Matter
  • The University of Tokyo
  • University of Manchester
  • Songshan Lake Materials Laboratory
  • National Institute for Materials Science Tsukuba
  • Aalto University

科研成果: 期刊稿件文章同行评审

摘要

Nonlinear photogalvanic effects in two-dimensional materials, particularly the nonlinear circular photocurrents (NCPs) that belong to the helicity-dependent spin photocurrents, have sparked enormous research interest. Although notable progress has been witnessed, the underling origin of NCPs remains elusive. Here, we present systematic photocurrent characteristics, symmetry analysis and theoretical calculations to uncover the physical origin of NCPs in MoS2, a prototypical 2D semiconductor. Our results show that the NCP responses in 2D semiconductor MoS2 result from the circular photon drag effect (CPDE), rather than the generally believed circular photogalvanic effect. Furthermore, we demonstrate that the NCPs are highly tunable with electrostatic doping and increase progressively with MoS2 thickness, evidencing the interlayer constructive nature of CPDE responses. Our Letter unravels the critical role of the previously overlooked CPDE contribution to NCPs, revolutionizing previous understanding and thus providing deep insights into further fundamental studies and technological advances in nonlinear photovoltaic and opto-spintronic devices.

源语言英语
文章编号086201
期刊Physical Review Letters
134
8
DOI
出版状态已出版 - 28 2月 2025
已对外发布

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