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Divergence control experiments on the SABRE extraction ion diode

机译:SABRE萃取离子二极管的发散控制实验

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Summary form only given. To support the development of a high-power extraction geometry light ion driver module for ICF (inertial confinement fusion) applications, the authors are investigating techniques for ion beam divergence measurement and control with a high-impedance applied-B extraction ion diode on the SABRE ten-stage linear induction accelerator (6 MV, 300 kA) at Sandia National Laboratories. Initial experiments have concentrated on divergence and beam uniformity measurements with an annular 4-MeV proton beam generated from a passive wax flashover ion source. This beam is transported through the return flux of the cathode magnetic field coils inside a static fill gas cell containing argon or nitrogen at 1 to 20 Torr. Divergence accounting is in progress to evaluate the contributions to divergence growth from ion source divergence and nonuniformity, electromagnetic instabilities in the anode-cathode gap, instabilities in the gas cell transport region arising from incomplete charge neutralization in a strong transverse magnetic field, and additional contributions from foil scattering and gas transport.
机译:仅提供摘要表格。为了支持开发用于ICF(惯性约束聚变)应用的高功率提取几何形状光离子驱动器模块,作者正在研究通过SABER上的高阻抗应用B提取离子二极管进行离子束发散测量和控制的技术。桑迪亚国家实验室(Sandia National Laboratories)的十级线性感应加速器(6 MV,300 kA)。最初的实验集中在使用由被动蜡闪络离子源产生的环形4-MeV质子束测量发散和束均匀度的过程中。该束通过包含1到20托的氩气或氮气的静态填充气室内部的阴极磁场线圈的返回通量传输。正在进行发散核算,以评估对离子源发散和不均匀性对发散增长的贡献,阳极-阴极间隙中的电磁不稳定性,在强横向磁场中由于不完全电荷中和而导致的气室传输区域中的不稳定性以及其他贡献由箔片散射和气体传输引起。

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