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New developments in pulsed power technology and associated electron beam transport mechanisms at the United Kingdom Atomic Weapons Establishment

机译:脉冲电力技术的新发展与英国原子武器建立的脉冲电力技术和相关电子束传输机制

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The Pulsed Power Group at AWE is interested in the generation of small, intense, multi-megavolt X-ray sources for radiographic applications. For this paper, research has been carried out into electron beam transport and focusing studies on one of our single pulse forming line flash X-ray machines. Experiments were undertaken on E Minor to improve the radiographic spot size generated by our 'paraxial diode'. This is a novel anode/cathode assembly designed to produce a small diameter electron beam focused onto a high Z target. Electrons are propagated through a gas-filled cone such that their electrostatic repulsive and magnetic attractive forces are almost cancelled. The cone's length and gas pressure were initially optimized and then specific gas species applied to the drift cone. Helium gas improved spot size stability whilst the addition of a 'secondary cell' to increase the neutralization of the electron beam's self-electric forces yielded a 30% improvement in measured spot size.
机译:AWE的脉冲功率集团对用于射线照相应用的小型强度,多MegaVolt X射线源的产生感兴趣。为此,已经在电子束传输和专注于我们的单脉冲形成线闪光X射线机器中进行了研究。对E MINES进行了实验,以改善我们“近轴二极管”产生的射线照相斑点尺寸。这是一种新的阳极/阴极组件,其设计成产生聚焦到高Z靶标的小直径电子束。电子通过填充锥形繁殖,使得它们的静电排斥和磁性吸引力几乎取消。最初优化锥体的长度和气体压力,然后施加到漂移锥的特定气体物种。氦气改善光斑尺寸稳定性,同时加入“二次电池”以增加电子束的自电力的中和产生的测量点尺寸的提高30%。

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