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Enhancement effect of THz emission and detection by THz one-dimensional photonic crystal with a nonlinear material

机译:三维光子晶体与非线性材料的增强效应和THz一维光子晶体检测

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Recently, several terahertz (THz) wave technologies have been developed not only for spectroscopy of materials but also for application such as imaging for advanced medical science and a security service. However, still now there are some problems in the THz spectroscopic system. For example, the generated THz intensity is not so strong in standard laboratory system. Therefore, a development of lower-priced THz spectroscopic systems with a bright emitter and a sensitive detector is necessary. This paper investigates the use of one-dimensional photonic crystals (1D-PCs) with a nonlinear optical material as the THz emitter and the detector. The enhancement of optical rectification and electro-optical effect in the 1D-PC with a nonlinear material is observed. If the both effects occur at the same time, about 10 times enhancement of THz signal in the THz TDS experiment are expected.
机译:最近,几个太赫兹(Thz)波技术不仅开发了材料的光谱,而且还用于适用于高级医学科学和安全服务等应用。然而,现在THz光谱系统仍然存在一些问题。例如,在标准实验室系统中产生的THz强度并不那么强。因此,需要具有明亮发射器和敏感探测器的低价THz光谱系统。本文研究了用非线性光学材料作为THZ发射器和检测器的一维光子晶体(1D-PC)的用途。观察到具有非线性材料的1D-PC中的光学整流和电光效应的增强。如果两种效果同时发生,预计TDS实验中的THz信号的增强约10倍。

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