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Transmission features of frequency-selective components in the far infrared determined by terahertz time-domain spectroscopy

机译:太赫兹时域光谱法测定远红外中频率选择成分的传输特性

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摘要

Transmission and phase-shift characteristics of dichroic high-pass filters with cutoff frequencies as high as 1.11 THz and of a cross-shaped grid bandpass filter with a resonance frequency of 280 GHz were measured with an electro-optic sampling terahertz time-domain spectrometer operating between 0.1 and 2 THz. Good agreement with transmission theories is found. We also compare the transmission performance of cascaded dichroic filters with that of cross-shaped grid bandpass filters. Both types of bandpass filter permit frequency-selective ultrafast experiments in the far-infrared spectral region. In the millimeter and the submillimeter wavelength regions, which are difficult to access by conventional means, knowledge of the frequency response of frequency-selective components is important for applications in frequency mixing, multiplying, and multiplexing in quasi-optical systems.
机译:截止频率高达1.11 THz的二向色性高通滤波器和谐振频率为280 GHz的十字形网格带通滤波器的传输和相移特性均通过电光采样太赫兹时域光谱仪进行测量在0.1和2 THz之间发现与传输理论有很好的一致性。我们还比较了级联二向色滤光片和十字形网格带通滤光片的传输性能。两种类型的带通滤波器都可以在远红外光谱区域进行频率选择性的超快实验。在毫米波和亚毫米波波长范围内,这是常规方法难以接近的,对于准光学系统中的频率混合,乘法和多路复用应用,了解频率选择组件的频率响应非常重要。

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