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Development and Testing of Immersed-Bz Diodes with Cryogenic Anodes

机译:用低温阳极开发和测试浸没 - BZ二极管

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Sandia National Laboratories is investigating and developing high-dose, high-brightness flash radiographic sources. The immersed-Bz diode employs large-bore, high-field solenoid magnets to help guide and confine an intense electron beam from a needle-like cathode "immersed" in the axial field of the magnet. The electron beam is focused onto a high-atomic-number target/anode to generate an intense source of bremsstrahlung X-rays. Historically, these diodes have been unable to achieve high dose ( 500 rad @ m) from a small spot ( 3 mm diameter). It is believed that this limitation is due in part to undesirable effects associated with the interaction of the electron beam with plasmas formed at either the anode or the cathode. Previous research concentrated on characterizing the behavior of diodes, which used untreated, room temperature (RT) anodes. Research is now focused on improving the diode performance by modifying the diode behavior by using cryogenic anodes that are coated in-situ with frozen gases. The objective of these cryogenically treated anodes is to control and limit the ion species of the anode plasma formed and hence the species of the counter-streaming ions that can interact with the electron beam. Recent progress in the development, testing and fielding of the cryogenically cooled immersed diodes at Sandia is described.
机译:桑迪亚国家实验室正在调查和开发高剂量,高亮度闪光射线源。浸没-B <亚> Z 二极管采用大孔,高场螺线管磁铁,以帮助引导和限制磁体的轴向区域中的针状阴极“浸没”的针状阴极。电子束聚焦到高原子数目标/阳极上,以产生Bremsstrahlung X射线的强源。从历史上看,这些二极管从小点(直径为3毫米)无法实现高剂量(& 500 rad @ m)。据信,这种限制部分是由于与在阳极或阴极处形成的等离子体的相互作用相关的不期望的效果。以前的研究集中在表征二极管的行为,它使用未处理的室温(RT)阳极。现在,研究表明,通过使用涂覆的冻结气体涂覆的低温阳极来改变二极管行为来改善二极管性能。这些低温处理的阳极的目的是控制和限制形成的阳极等离子体的离子种类,因此可以与电子束相互作用的反流离子的种类。描述了桑迪亚在阳光下冷冻冷却的浸没二极管的开发,测试和锻炼的最新进展。

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