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首页> 外文期刊>IEEE Transactions on Plasma Science >Investigation of intense electromagnetic transient phenomenon and Paschen curves for hydrogen and helium in subnanosecond regime
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Investigation of intense electromagnetic transient phenomenon and Paschen curves for hydrogen and helium in subnanosecond regime

机译:亚纳秒状态下氢和氦的强烈电磁瞬变现象和Paschen曲线的研究

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One of the major drivers of pulsed power innovation is ultrawide-band technology. Subnanosecond risetimes with nanosecond or less pulse durations place this technology in a temporal regime that corresponds to microwave frequencies. These ultrawide-band devices have pushed pulsed power technology into a parameter space where there is little published data on breakdown. This paper describes the experimental determination of the Paschen curve for two gases under the application of intense, transient, electric fields. This experiment utilized the Hindenberg series of hydrogen gas switched pulsers at the Air Force Research Laboratory located at Kirtland Air Force Base. The Paschen curves for hydrogen and helium are presented. For subnanosecond risetime pulses, there are typically very few free electrons in the discharge space generated by external radiation sources such as cosmic rays. The occurrence of cosmic ray ionization in the gap is unlikely in such a short period of time. Therefore, electric field emission plays a very important role in these discharges. However, a small number of discharges are effected by ionization from external radiation, with the resulting data lying along classic Paschen curves. As a verification of this effect, an intense continuous ultraviolet (UV) source was utilized for supplying seed electrons and the expected Paschen curves of hydrogen and helium were obtained.
机译:脉冲功率创新的主要驱动力之一是超宽带技术。纳秒级以下的纳秒上升时间或更少的脉冲持续时间将这项技术置于与微波频率相对应的时间范围内。这些超宽带设备将脉冲功率技术推向了参数空间,在该参数空间中几乎没有关于故障的已发布数据。本文描述了在强,瞬变,电场作用下两种气体的帕申曲线的实验测定。该实验在位于Kirtland空军基地的空军研究实验室使用了Hindenberg系列氢气开关脉冲器。给出了氢和氦的帕申曲线。对于亚纳秒的上升时间脉冲,通常在由外部辐射源(例如宇宙射线)产生的放电空间中只有很少的自由电子。在这么短的时间内不可能在间隙中发生宇宙射线电离。因此,电场发射在这些放电中起着非常重要的作用。但是,少量的放电受外部辐射的电离影响,结果数据沿经典的Paschen曲线分布。为了验证这种效果,利用强连续紫外线(UV)源提供种子电子,并获得了预期的氢和氦的帕申曲线。

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