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Determinations of plasma density and decay time in the hollow cathode discharge by microwave transmission 被引量:1
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作者 张林 何锋 +1 位作者 李世超 欧阳吉庭 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第12期347-351,共5页
The microwave (MW) transmission method is employed to measure both the plasma density and the plasma decay time in the hollow cathode discharge (HCD) in argon at low pressure. The plasma density in DC-driven or pu... The microwave (MW) transmission method is employed to measure both the plasma density and the plasma decay time in the hollow cathode discharge (HCD) in argon at low pressure. The plasma density in DC-driven or pulsed HCD is on the order of 1012 cm-3, which can block the X-band MW effectively. In the case of pulsed HCD, the MW transmittance shows the same waveform as the pulsed current during the rising edge if the driving frequency is low, but with a longer delay during the falling edge. The MW transmittance reaches a constant low level when the driving frequency is high enough. The plasma decay time in the HCD system is measured to be about 100 μs around a pressure of 120 Pa. The ambipolar diffusion is considered to be the major mechanism in the decay process. 展开更多
关键词 hollow cathode discharge plasma density plasma decay microwave transmission
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The Interaction of C-Band Microwaves with Large Plasma Sheets
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作者 DING Liang HUO Wenqing +1 位作者 YANG Xinjie XU Yuemin 《Plasma Science and Technology》 SCIE EI CAS CSCD 2012年第1期9-13,共5页
A large plasma sheet 60 cm×60 cm×2 cm in size was generated using a hollow cathode, and measurements were conducted for interactions including transmission, reflection and absorption. With different discharg... A large plasma sheet 60 cm×60 cm×2 cm in size was generated using a hollow cathode, and measurements were conducted for interactions including transmission, reflection and absorption. With different discharge parameters, plasma sheets can vary and influence microwave strength. Microwave reflection decreases when the discharge current rises, and the opposite occurs in transmission. The C-band microwave is absorbed when it is propagated through large plasma sheets at higher pressure. When plasma density and collision frequency are fitted with incident microwave frequency, a large amount of microwave energy is consumed. Reflection, transmission and absorption all exist simultaneously. Plasma sheets are an attractive alternative to microwave steering at low pressure, and the microwave reflection used in receiving radar can be altered by changing the discharge parameters. 展开更多
关键词 hollow cathode discharge microwave effect large plasma sheet density distribution
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