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Versatile tunable optical injection of chiral polarized Weyl fermions in a magnetic Weyl semimetal Co3Sn2S2

  • Zipu Fan
  • , Junchao Ma
  • , Jinying Yang
  • , Yan Sun
  • , Zhuocheng Lu
  • , Shuxia Chen
  • , Delang Liang
  • , Dehong Yang
  • , Chang Xu
  • , Qinsheng Wang
  • , Anlian Pan
  • , Ji Feng
  • , Enke Liu*
  • , Jin Luo Cheng*
  • , Dong Sun*
  • *此作品的通讯作者
  • Peking University
  • CAS - Institute of Physics
  • University of Chinese Academy of Sciences
  • CAS - Institute of Metal Research
  • Hunan University
  • Beijing Institute of Technology
  • CAS - Changchun Institute of Optics Fine Mechanics and Physics
  • Zhengzhou University
  • Ministry of Education in China

科研成果: 期刊稿件文章同行评审

摘要

Precise probe and control of various quantum degrees of freedom in novel quantum matters are central to understanding fundamental quantum physics and hold promise for innovative routes to encode and process information. Chirality is one such degree of freedom that has recently attracted intense research interest, especially for Weyl fermions in topological Weyl semimetals. The coupling of chiral degrees of freedom through light‒matter interactions and the versatile control of these couplings through external fields can lead to precise quantum control of Weyl fermions. In this work, we demonstrate the observation of light chirality-dependent photocurrent in the mid-infrared regime. Excitation wavelength-dependent measurements reveal that the photocurrent originates from the injection of chiral polarized Weyl fermions by chiral polarized mid-infrared photons. The optical process that generates unbalanced chiral polarized Weyl fermions is determined to be a third-order nonlinear photocurrent process. Compared with nonmagnetic Weyl semimetals, such coupling is tunable in a versatile manner in magnetic Weyl semimetals with the magnetization direction and external electric field in addition to the chirality of light. Our results are not only directly applicable to tunable circular-polarization-sensitive photodetection in the mid-infrared regime, but also pave the way toward functional quantum devices that utilize the chiral quantum degrees of freedom of Weyl fermions.

源语言英语
文章编号nwaf402
期刊National Science Review
12
12
DOI
出版状态已出版 - 1 12月 2025
已对外发布

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