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THz Plasma Diagnostics: an evolution from FIR and Millimeter waves historical applications

机译:太赫兹等离子体诊断:FIR和毫米波历史应用的演进

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Extremely broadband (100 GHz–30 THz) single cycle THz pulses are routinely generated with femtosecond laser for Time Domain Spectroscopy applications (TDS). The wide frequency range has an unquestionable diagnostic potential for Tokamak plasmas and not surprisingly THz TDS finds a natural field of application in this area, which is an evolution of the FIR and millimeter waves diagnostics, where ENEA Frascati holds historical expertise. By illuminating the plasma with a THz beam, phase, intensity and polarization of both reflected and transmitted beams can be detected, devising a single diagnostic instrument capable of measuring multiple plasma parameters. We will describe and discuss the laboratory work now in progress to realise a tailored THz-TDS spectrometer with design parameters optimised for the requirements of Tokamak plasmas and the tests of optical fibers and quasioptical couplers to optimise access to plasma. ENEA Frascati and the Photonics group of Physics Dept. of Oxford University are collaborating on this subject [1].
机译:飞秒激光通常会在时域光谱学应用(TDS)中产生极宽带(100 GHz–30 THz)的单周期THz脉冲。宽频率范围对于Tokamak等离子体具有无疑的诊断潜力,毫不奇怪,THz TDS在该领域找到了自然的应用领域,这是FIR和毫米波诊断技术的演进,ENEA Frascati在此领域拥有悠久的历史。通过用太赫兹光束照射等离子体,可以检测反射光束和透射光束的相位,强度和偏振,从而设计出一种能够测量多个等离子体参数的诊断仪器。我们将描述和讨论正在进行的实验室工作,以实现量身定制的THz-TDS光谱仪,其设计参数针对Tokamak等离子体的要求进行了优化,并测试了光纤和准光耦合器以优化对等离子体的访问。 ENEA Frascati和牛津大学物理系的光子学小组正在就此主题进行合作[1]。

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