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Electron density and temperature measurement method by using emission spectroscopy in atmospheric pressure nonequilibrium nitrogen plasmas

机译:大气非平衡氮等离子体中发射光谱法电子密度和温度测量方法

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摘要

A novel spectroscopic method is proposed for the measurement of electron density and temperature in atmospheric pressure dielectric barrier discharges using nitrogen gas. Simplified collisional-radiative models for the electronic and the vibrational states yield two separate continuity equations as a function of the electron density and the temperature with the coefficients expressed in terms of rotational temperature, vibrational temperature, and emission intensity ratio between the first positive system and the second positive system of nitrogen molecules. The electron density and the temperature in nonequilibrium atmospheric pressure plasmas can be determined by solving the continuity equations with the coefficients estimated from the spectroscopic measurements. It was confirmed by applying to a high power dielectric barrier discharge, where the measured plasma parameters were in good agreement with the estimation by using the electron conductivity of the discharge. (c) 2006 American Institute of Physics.
机译:提出了一种新颖的光谱方法,用于使用氮气测量大气压介质阻挡放电中的电子密度和温度。电子态和振动态的简化碰撞辐射模型产生了两个独立的连续性方程,它们是电子密度和温度的函数,系数以旋转温度,振动温度以及第一正系统与第一系统之间的发射强度比来表示。氮分子的第二个正系统。非平衡大气压等离子体中的电子密度和温度可以通过求解连续性方程来确定,该连续性方程具有从光谱测量值估计的系数。通过将其应用于高功率介质阻挡放电可以确定这一点,其中测得的等离子体参数与使用放电的电子电导率进行的估算非常吻合。 (c)2006年美国物理研究所。

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