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Polarization response of two-dimensional metallic photonic crystals studied by terahertz time-domain spectroscopy

机译:太赫兹时域光谱研究二维金属光子晶体的偏振响应

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摘要

The polarization characteristics of a terahertz (THz) wave transmitted through two-dimensional (2-D) metallic photonic crystals (MPCs) are investigated. The 2-D MPCs studied in this paper are metal slabs perforated periodically with circular holes. We measured the polarization characteristics of the THz wave using a THz time-domain spectroscopic system with wire grid polarizers in the time and frequency domains. The linearly polarized incident THz wave changes its polarization direction and becomes elliptic after it transmits through the sample. This phenomenon is highly sensitive to the incident angle. It is shown that the frequency range at which the polarization rotation occurs is related to the lattice constant of a photonic crystal, indicating the importance of photonic band modes of the 2-D MPC in the mechanism of the phenomenon.
机译:研究了通过二维(2-D)金属光子晶体(MPC)传输的太赫兹(THz)波的偏振特性。本文研究的二维MPC是周期性穿孔的带圆孔的金属板。我们使用带有时域和频域线栅偏振器的太赫兹时域光谱系统测量了太赫兹波的偏振特性。线偏振入射太赫兹波会改变其偏振方向,并在穿过样品后变为椭圆形。这种现象对入射角非常敏感。结果表明,发生偏振旋转的频率范围与光子晶体的晶格常数有关,表明二维MPC的光子能带模在现象机理中的重要性。

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