Spectroscopic investigation of the RGS-II hypervelocity plasma armature

B. D. Barrett, R. Bengtson, M. Baker, W. Nunnally
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引用次数: 0

Abstract

A spectroscopic investigation of the plasma armature in the railgun simulator RGS-II is underway. RGS-II can accelerate the plasma armature to velocities up to 20 km/s and produce armature currents up to 300 kA. The optical signal is extracted at the midbore position by a fiber-optic bundle. Emission spectra are recorded by an optical multichannel analyzer system. The emission spectra are used to identify the plasma constituents. Relative intensities of neutral and ionic species are correlated with interferometric measurements of the electron density to estimate the plasma temperature using the Saha equations. Effects of the ambient chamber pressure and total armature current on the plasma armature are being studied over a range of 200 mtorr to atmospheric pressure and from 50 to 300 kA, respectively.<>
RGS-II超高速等离子体电枢的光谱研究
轨道炮模拟器RGS-II中等离子体电枢的光谱研究正在进行中。RGS-II可以将等离子体电枢加速到高达20公里/秒的速度,并产生高达300 kA的电枢电流。光信号由光纤束在中孔位置提取。发射光谱由光学多通道分析仪系统记录。发射光谱用于鉴别等离子体成分。中性和离子的相对强度与电子密度的干涉测量相关联,利用Saha方程估计等离子体温度。环境室压力和电枢总电流对等离子体电枢的影响分别在200毫安至大气压和50至300毫安范围内进行了研究。
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