等离子体子
光子学
霍尔效应
自旋(空气动力学)
自旋霍尔效应
物理
光电子学
凝聚态物理
自旋极化
量子力学
磁场
电子
热力学
作者
Ting Jiang,Yetao Shu,Yifei Song,Yong Zhang,Zhaoxin Wen,Zhaoming Luo
标识
DOI:10.1088/1361-6463/ad34e0
摘要
Abstract The asymmetric photonic spin Hall effect (APSHE) induced by surface plasmon polaritons in a graphene-based structure is actively manipulated by external magnetic field and electric field. It is revealed that the spin-dependent splitting exhibits spatio-temporal asymmetric property due to the involvement of the anisotropic graphene. The peak of asymmetry degree in APSHE at the position of reflectance valley corresponds toward a smaller incident angle with the increase of magnetic field intensity or Fermi energy, which is attributed to the tunability of reflectance for the graphene-based structure. Based on the asymmetric splitting shift, a potential application is proposed for detecting low concentration gas molecules and the detection resolution can be dynamically tunable by changing the magnetic field intensity and Fermi energy. This study may provide a new reference in the fabrication of graphene-based plasmonic sensor devices.
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