基于磷化镓晶体差频产生的连续波太赫兹信号发生器及其光谱学应用

Tetsuo Sasaki, T. Tanabe, T. Sakamoto, J. Nishizawa
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引用次数: 2

摘要

我们利用磷化镓(GaP)晶体中的差频产生(DFG)原理,研制了一种宽频可调连续波太赫兹(THz)信号发生器(SG)。连续波太赫兹SG具有高分辨率、高精度、宽动态范围、高稳定性、高耐用性、易操作/维护和低成本等优点。将连续波太赫兹SG作为光源与脉冲管制冷机冷却的超导跃迁边缘传感器(TES)热热计相结合,可以实现光谱仪的不间断系统工作。由于我们可以在牺牲频率分辨率的情况下将太赫兹输出功率提高到0.1 μW,现在可以在室温下应用热释电探测器或热热计相机进行光谱仪或单色成像。精确的太赫兹谱仪可用于药物等有机晶体的评价。太赫兹光谱学未得到充分利用的原因之一是,在太赫兹范围内观测到的大多数吸收都没有分配到振动模式。我们开发了一种技术,通过比较偏振依赖光谱和密度泛函理论(DFT)计算结果来澄清它们。
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Continuous Wave Terahertz Signal Generator based on Difference Frequency Generation in Gallium Phosphide crystal and its applications for spectroscopy
We have developed a wide frequency tunable Continuous Wave (CW) Terahertz (THz) Signal Generator (SG) on the principle of Difference Frequency Generation (DFG) in a Gallium Phosphide (GaP) crystal. The CW THz SG has the merits of high resolution, high accuracy, wide dynamic range, high stability, high durability, easy operation/maintenance, and low cost. Combining the CW THz SG as a light source with a superconducting Transition Edge Sensor (TES) bolometer cooled by a pulse tube refrigerator, the spectrometer working as a non-stop system could be realized. As we could have increased the THz output power up to 0.1 μW at the sacrifice of lack of frequency resolution, it is now possible to apply a pyroelectric detector or a bolometer camera at room temperature operation for spectrometer or monochromatic imaging. Accurate THz spectrometer could be used for evaluation of organic crystals like as pharmaceuticals. One of the reasons for underutilization of THz spectroscopy is that most of the absorptions observed in THz range are not assigned to vibrational modes. We have developed a technique to clarify them by comparing polarization dependent spectra with Density Function Theory (DFT) calculation results for pharmaceutical single crystals.
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