Design and performance of a novel vacuum-capable terahertz time-domain spectrometer

Yaochun Shen, P. Upadhya, E. Linfield, A. Davies
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引用次数: 1

Abstract

We have designed and built a vacuum-capable terahertz (THz) time-domain spectrometer which allows THz spectroscopy measurements to be made whilst avoiding interference from, for example, water vapour absorption. Using a biased semi-insulating GaAs emitter and a 1-mm-thick [110] oriented ZnTe crystal as an electro-optic detection sensor, we achieved a dynamic range of over 10/sup 10/ in THz power and a useful frequency range of over 3 THz. The system is very stable with a <2% day-to-day spectral variation, and up to ten samples can be measured without the need to open the vacuum chamber. In addition, the broadband (over 30 THz) capability of the system has been demonstrated by using a 30 /spl mu/m GaSe crystal as the emitter and a 20 /spl mu/m ZnTe crystal as the detector. The fine absorption features of uric acid were resolved at room temperature with this spectrometer, and are also presented.
一种新型真空太赫兹时域光谱仪的设计与性能
我们设计并建造了一个真空能力的太赫兹(THz)时域光谱仪,该光谱仪允许进行太赫兹光谱测量,同时避免干扰,例如水蒸气吸收。使用偏置半绝缘GaAs发射极和1 mm厚[110]取向ZnTe晶体作为电光检测传感器,我们实现了超过10/sup 10/太赫兹功率的动态范围和超过3太赫兹的有效频率范围。该系统非常稳定,每日光谱变化<2%,无需打开真空室即可测量多达10个样品。此外,采用30 /spl mu/m的GaSe晶体作为发射体,20 /spl mu/m的ZnTe晶体作为探测器,证明了该系统的宽带(超过30 THz)能力。用该光谱仪在室温下分析了尿酸的细微吸收特征,并给出了分析结果。
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