首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Design and performance of an E-band chirped pulse spectrometer for kinetics applications: OCS - He pressure broadening
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Design and performance of an E-band chirped pulse spectrometer for kinetics applications: OCS - He pressure broadening

机译:动力学应用的电子带啁啾脉冲光谱仪的设计与性能:OCS - 他压力扩大

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Product channel-specific reaction kinetics at low temperature presents a significant challenge for both experiment and theory but provides essential inputs for astrochemical models of cold interstellar environments. Reaction kinetics studies using chirped pulse Fourier transform microwave (CP-FTMW) spectroscopy provide a potential solution but require the use of a buffer gas to thermalize the reactants and products; however, collisions with the buffer gas reduce the length of the detected signal, the free induction decay, through pressure broadening. The effect of this on time domain signals is largely unexplored using CP-FTMW spectrometers. A new E-band (60-90 GHz) spectrometer has been constructed using previously unavailable equipment in order to maximize its performance for detecting molecules in collisional environments. The design of this spectrometer is described in detail. The pressure broadening of OCS in He was used to test the spectrometer under collisional conditions similar to those that are routinely used to perform reaction kinetics measurements. The corresponding pressure broadening coefficients for transitions in this frequency range were determined at room temperature and the performance of the spectrometer was assessed in relation to recently reported chirped pulse in uniform flow experiments. (C) 2020 Elsevier Ltd. All rights reserved.
机译:低温的产品频道特异性反应动力学对实验和理论来说具有重大挑战,但为冷壁术环境的星式模型提供了基本投入。反应动力学研究采用啁啾脉冲傅里叶变换微波(CP-FTMW)光谱提供潜在的解决方案,但需要使用缓冲气体来热化反应物和产品;然而,与缓冲气体的碰撞减小了检测信号的长度,通过压力展现,自由感应衰减。这对时域信号对时域信号的影响主要是使用CP-FTMW光谱仪来探测的。使用先前不可用的设备构建了新的E频带(60-90GHz)光谱仪,以最大化其对碰撞环境中分子的性能。详细描述了该光谱仪的设计。他在他中的抗体的压力扩大用于测试与常规用于执行反应动力学测量的碰撞条件下的光谱仪。在室温下测定该频率范围内的过渡的相应压力展大系数,并在均匀流动实验中的最近报道的啁啾脉冲中评估光谱仪的性能。 (c)2020 elestvier有限公司保留所有权利。

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