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Parameters of runaway electron beam generated during excitation by nanosecond voltage pulses in short gaps filled with nitrogen

机译:通过纳秒电压脉冲在填充氮气的短间隙中激发过程中产生的Runaway电子束参数

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Parameters of a supershort avalanche electron beam (SAEB) in nitrogen excited by the triangular-shaped voltage pulses with 45kV amplitude in incident wave and full width at half-maximum (FWHM) of ~ 1 ns were investigated. In experiments, cylindrical-shaped cathodes made of aluminum and stainless steel were used. An interelectrode distance in the gas-filled diode was 3, 5, and 8 mm. It was established that the highest values of SAEB's current were registered with an aluminum cathode. It was shown that, in contrast to the case of 8-mm gap length, when the interelectrode distances were 3 and 5 mm, the amplitude of SAEB current pulse in nitrogen began to decrease with high values of the pressure - 100 and 50 kPa, respectively.
机译:研究了通过在入射波中具有45kV振幅的三角形电压脉冲激发的超蒸发电子束(SAEB)的参数,并且在〜1ns的半最大(FWHM)中具有45kV振幅和全宽。在实验中,使用由铝和不锈钢制成的圆柱形阴极。气体填充二极管中的电极距离为3,5和8mm。建立了SAEB电流的最高值在铝阴极注册。结果表明,与8mm间隙长度的情况相比,当电极距离为3和5mm时,氮气中SAEB电流脉冲的幅度开始随压力 - 100和50kPa的高值而降低,分别。

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