太赫兹辐射
超材料
椭圆极化
光学
极化(电化学)
布鲁斯特角
分裂环谐振器
线极化
材料科学
光电流
物理
谐振器
光电子学
化学
激光器
物理化学
布鲁斯特
作者
Mingjian Shi,Zhen Lei,Yayan Xi,Xueqin Cao,Hui‐biao Liu,Yuanyuan Huang,Xinlong Xu
标识
DOI:10.1002/andp.202300314
摘要
Abstract Polarized terahertz (THz) wave generation is of great significance for chiral and anisotropic sensing applications. However, how to manipulate amplitude, polarization, and ellipticity of the THz generation is still a fundamental challenge. Herein, polarized THz wave generation is achieved from a bilayer metamaterial consisting of T‐shaped structure (TSS) and split resonator rings (SRRs) by combining Maxwell and hydrodynamic equations. The elliptically polarized THz wave can be synthetized directly from horizontally and vertically polarized THz components due to the orthogonal nonlinear photocurrents along the arm‐directions of TSS and SRRs, respectively. Besides, the ellipticity and the orientation angle of the THz polarization ellipse can be modulated by the twist angle between the SRRs and TSS layers. The maximum ellipticity can reach 0.34 while the orientation angle is tunable from −0.45 to 0.48π by tuning the twist angle. This work proposes an interlayer coupling method for the polarized THz sources based on metamaterials in potential circular dichroism and chiral sensing applications.
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