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Using radio astronomical receivers for molecular spectroscopic characterization in astrochemical laboratory simulations: A proof of concept

机译:在天化学实验室模拟中使用射电天文接收机进行分子光谱表征:概念验证

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摘要

We present a proof of concept on the coupling of radio astronomical receivers and spectrometers with chemical reactors and the performances of the resulting setup for spectroscopy and chemical simulations in laboratory astrophysics. Several experiments including cold plasma generation and UV photochemistry were performed in a 40 cm long gas cell placed in the beam path of the Aries 40 m radio telescope receivers operating in the 41-49 GHz frequency range interfaced with fast Fourier transform spectrometers providing 2 GHz bandwidth and 38 kHz resolution.The impedance matching of the cell windows has been studied using different materials. The choice of the material and its thickness was critical to obtain a sensitivity identical to that of standard radio astronomical observations.Spectroscopic signals arising from very low partial pressures of CH3OH, CH3CH2OH, HCOOH, OCS, CS, SO2 (<10−3 mbar) were detected in a few seconds. Fast data acquisition was achieved allowing for kinetic measurements in fragmentation experiments using electron impact or UV irradiation. Time evolution of chemical reactions involving OCS, O2 and CS2 was also observed demonstrating that reactive species, such as CS, can be maintained with high abundance in the gas phase during these experiments.
机译:我们提供有关射电天文接收机和光谱仪与化学反应堆的耦合以及实验室天体物理学中光谱学和化学模拟的结果设置性能的概念证明。在放置在Aries 40 m射电望远镜接收器的光路中的40 cm长的气室中进行了包括冷等离子体生成和UV光化学在内的一些实验,该接收器在41-49 GHz频率范围内与提供2 GHz带宽的快速傅立叶变换光谱仪接口和38 kHz分辨率。已使用不同的材料研究了单元窗口的阻抗匹配。材料的选择及其厚度对于获得与标准射电天文观测相同的灵敏度至关重要.CH3OH,CH3CH2OH,HCOOH,OCS,CS,SO2的极低分压产生的光谱信号(<10 -在几秒钟内检测到3 mbar)。实现了快速的数据采集,从而可以在使用电子撞击或紫外线照射的碎片实验中进行动力学测量。还观察到了涉及OCS,O2和CS2的化学反应的时间演变,表明在这些实验过程中,可以在气相中以高丰度维持反应性物质(例如CS)。

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