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

F. Miyamaru, T. Kondo, T. Nagashima, M. Tani, M. Hangyo
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引用次数: 1

Abstract

The polarization characteristics of the THz wave transmitted through the two-dimensional metallic photonic crystal (2D-MPC) are investigated. The 2D-MPC, we used here, is a thin conductive screen perforated periodically with circular holes. We measured the polarization characteristics of the THz wave using THz time-domain spectroscopy with wire-gird polarizers. In this system, we can detect the temporal polarization behavior of the THz wave and describe them in 3D-trajectory plot. The polarization rotation of the detected THz wave is observed although the incident THz wave is linearly polarized. This indicates that the 2D-MPC acts as a wave plate for the THz wave. It is also observed that this polarization rotation of the transmitted THz wave is highly sensitive to the incident angle.
用太赫兹时域光谱研究二维金属光子晶体的偏振响应
研究了太赫兹波在二维金属光子晶体(2D-MPC)中的偏振特性。我们在这里使用的2D-MPC是一个薄的导电屏幕,上面周期性地打上圆孔。我们用线栅偏振器测量太赫兹时域光谱的偏振特性。在该系统中,我们可以检测太赫兹波的时间极化行为,并在三维轨迹图中描述它们。虽然入射太赫兹波是线偏振的,但探测到太赫兹波的偏振旋转。这表明2D-MPC充当太赫兹波的波片。透射太赫兹波的偏振旋转对入射角高度敏感。
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