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Rapid X-band microwave breakdown in Ne

机译:Ne中X波段微波的快速击穿

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摘要

Observations of rapidly formed (<50−400 ns) distributed plasma discharges using X-band microwaves in Neon with 1 mTorr residual air are presented. A stainless steel cylindrical discharge test chamber is used to observe microwave breakdown at 10 to 760 torr pressures. The chamber is enclosed with polycarbonate windows on both ends and has two side ports. The magnetron illuminates the chamber using 25 kW, 9.382 GHz and 0.8 µs pulse-width power through an X-band waveguide pressed against the polycarbonate window. Microwave diodes are used to measure incident, reflected, and transmitted microwave power to a moveable monopole antenna located beyond the discharge chamber. They provide information to determine the discharge reflection and attenuation characteristics as the pressure is varied. Observations of localized transmission power reduction measurements of −20 dB that occur within 50–400 ns caused by the plasma under different conditions have been made. Optical emission spectra experiments allow one to determine the gas temperature of the plasma at different pressures. Microwave mixers are used to compare both the amplitude and phase of the reflected signals in phase and in quadrature (90 degrees) relative to a fixed phase reference signal. Together with a six region 1-D plasma modeling code, the effective plasma density, collision frequency and electron temperature are estimated. An ICCD provides fast (<50 ns) time-scale optical images to estimate the plasma size, also revealing the plasma formation and decay processes.
机译:提出了在氖气中使用X波段微波和1 mTorr残留空气对快速形成的(<50-400 ns)分布等离子体放电进行观察的方法。使用不锈钢圆柱形放电测试室观察10至760托压力下的微波击穿。该腔室的两端都装有聚碳酸酯窗,并有两个侧孔。磁控管通过压在聚碳酸酯窗口上的X波段波导以25 kW,9.382 GHz和0.8 µs脉冲宽度功率照亮腔室。微波二极管用于测量入射,反射和传输到位于放电室之外的可移动单极天线的微波功率。它们提供信息以确定压力变化时的放电反射和衰减特性。已经观察到在不同条件下等离子在50–400 ns内发生的−20 dB的局部传输功率降低测量值。光学发射光谱实验可以确定不同压力下等离子体的气体温度。微波混频器用于比较相对于固定相位参考信号的同相和正交(90度)反射信号的幅度和相位。连同六个区域的一维等离子体建模代码一起,可以估算有效等离子体密度,碰撞频率和电子温度。 ICCD提供快速(<50 ns)时标光学图像以估计等离子体尺寸,还揭示了等离子体的形成和衰减过程。

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