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Grating-assisted coupling of terahertz waves into a dielectric waveguide studied by terahertz time-domain spectroscopy

机译:太赫兹时域光谱研究将太赫兹波光栅辅助耦合到介质波导中

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We report on the efficient coupling of terahertz (THz) waves into a dielectric waveguide by means of a diffraction grating engraved at the top of the waveguide. The waveguide is made of a 201-μm-thick high-resistivity silicon wafer. The transmission of the device, measured versus frequency by terahertz time-domain spectroscopy, shows usual m lines when a frequency component of the THz pulse spectrum satisfies the phase-matching condition and is coupled into the waveguide. The experimental data are well modeled with the differential electromagnetic method to compute the diffraction pattern of the grating device. The dispersion curve of the first four modes of propagation is determined from the frequency position of the m lines recorded for different angles of incidence of the THz beam. The waveguide exhibits a weak group velocity dispersion at high frequencies.
机译:我们报告了刻在波导顶部的衍射光栅,将太赫兹(THz)波有效耦合到介质波导中。波导由厚度为201μm的高电阻硅晶片制成。当太赫兹脉冲频谱的频率分量满足相位匹配条件并耦合到波导中时,通过太赫兹时域光谱仪测量的设备传输率随频率变化,显示出通常的m条线。用差分电磁法很好地模拟了实验数据,以计算光栅装置的衍射图。前四种传播模式的色散曲线是从针对太赫兹光束不同入射角记录的m条线的频率位置确定的。波导在高频下表现出弱的群速度色散。

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