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Electrical and Chemical Properties of XeCl~*(308 nm) Exciplex Lamp Created by a Dielectric Barrier Discharge

机译:介电势垒放电产生的XeCl〜*(308 nm)激发灯的电和化学性质

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The aim of this work is to highlight, through numerical modeling, the chemical and the electrical characteristics of xenon chloride mixture in XeCl~* (308 nm) excimer lamp created by a dielectric barrier discharge. A temporal model, based on the Xe/Cl_2 mixture chemistry, the circuit and the Boltzmann equations, is constructed. The effects of operating voltage, Cl_2 percentage in the Xe/Cl_2 gas mixture, dielectric capacitance, as well as gas pressure on the 308-nm photon generation, under typical experimental operating conditions, have been investigated and discussed. The importance of charged and excited species, including the major electronic and ionic processes, is also demonstrated. The present calculations show clearly that the model predicts the optimal operating conditions and describes the electrical and chemical properties of the XeCl~* exciplex lamp.
机译:这项工作的目的是通过数值模型强调由介电势垒放电产生的XeCl〜*(308 nm)准分子灯中氯化氙混合物的化学和电气特性。基于Xe / Cl_2混合化学,电路和玻尔兹曼方程,建立了一个时间模型。在典型的实验操作条件下,已经研究和讨论了工作电压,Xe / Cl_2气体混合物中Cl_2的百分比,介电电容以及气压对308 nm光子生成的影响。还证明了带电和受激物质的重要性,包括主要的电子和离子过程。当前的计算清楚地表明,该模型可以预测最佳工作条件,并描述XeCl〜*激基灯的电学和化学性质。

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