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Active manipulation of the spin and orbital angular momentums in a Terahertz graphene-based hybrid plasmonic waveguide

  • Ziang Wang
  • , Qilong Tan
  • , Yong Liang
  • , Xia Zhou
  • , Wen Zhou
  • , Xuguang Huang
  • South China Normal University
  • University of Oxford

科研成果: 期刊稿件文章同行评审

7 引用 (Scopus)

摘要

Angular momentums (AMs) of photons are crucial physical properties exploited in many fields such as optical communication, optical imaging, and quantum information processing. However, the active manipulation (generation, switching, and conversion) of AMs of light on a photonic chip remains a challenge. Here, we propose and numerically demonstrate a reconfigurable graphene-based hybrid plasmonic waveguide (GHPW) with multiple functions for on-chip AMs manipulation. Its physical mechanism lies in creating a switchable phase delay of ±π/2 between the two orthogonal and decomposed linear-polarized waveguide modes and the spin-orbit coupling in the GHPW. For the linear-polarized input light with a fixed polarization angle of 45°, we can simultaneously switch the chirality (with −ћ/+ћ) of the transverse component and the spirality (topological charge ℓ = −1/+1) of the longitudinal component of the output terahertz (THz) light. With a switchable phase delay of ±π in the GHPW, we also developed the function of simultaneous conversion of the charity and spirality for the circular-polarized input light. In addition, a selective linear polarization filtering with a high extinction ratio can be realized. With the above multiple functions, our proposed GHPWs are a promising platform in AMs generation, switching, conversion, and polarization filtering, which will greatly expand its applications in the THz photonic integrated circuits.

源语言英语
文章编号2436
页(从-至)1-12
页数12
期刊Nanomaterials
10
12
DOI
出版状态已出版 - 12月 2020
已对外发布

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