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X-ray radiation and runaway electron beam spectra at a nanosecond discharge in atmospheric-pressure air

机译:大气压空气中纳秒级放电的X射线辐射和失控电子束光谱

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摘要

The dependences of the electron beam intensity and X-ray dose on the thickness of metal foils (Al, Cu) in a nanosecond discharge initiated in atmospheric-pressure air are studied theoretically and experimentally. Calculated curves of electron beam attenuation in aluminum and X-ray dose attenuation in copper agree well with experimental data. It is found that the amplitude of a super-short avalanche electron beam and the X-ray exposure dose reach maximal values at different values of the interelectrode gap. When the length of the cathode's edge with a small radius of curvature increases, an interelectrode gap maximizing the amplitude of the runaway electron current shrinks.
机译:从理论上和实验上研究了电子束强度和X射线剂量对在大气压空气中引发的纳秒级放电中金属箔(Al,Cu)厚度的依赖性。铝中电子束衰减和铜中X射线剂量衰减的计算曲线与实验数据吻合良好。发现在电极间间隙的不同值处,超短雪崩电子束的振幅和X射线曝光剂量达到最大值。当具有较小曲率半径的阴极边缘的长度增加时,最大化失控电子电流幅度的电极间间隙会缩小。

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