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Inverse diode for combination of multiple modules and fusion driver-target standoff

机译:用于多个模块和融合驱动器 - 目标支架的组合的逆二极管

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A newly invented, multi-megampere inverse diode converts the currents in many electron beams to current in a single Magnetically Insulated Transmission Line (MITL) for driving a common load. Electrons are injected through a transparent anode, cross a vacuum gap, and are absorbed in the cathode of the inverse diode. The cathode current returns to the anode through a load and generates electric and magnetic fields in the anode-cathode gap. Counter streaming electron flow is prevented by self-magnetic insulation in most of the inverse diode and by self-electrostatic insulation where the magnetic field is insufficient. Two-dimensional simulations with a 40 MA, 4 MeV, 40 ns electron beam at 3.5 kA/cm2 current density, 5 degree beam divergence, and up to 60 degree injection angle show 85% of the injected electron beam current is captured and fed into the MITL. Exploratory experiments with a 2.5 MA, 2.8 MeV, 40 ns electron beam at 2 kA/cm2 at injection normal to the anode gave 70+/-10% collection efficiency in an unoptimized inverse diode. The inverse diode appears to have the potential of coupling multiple pulsed power modules into a common load at rates of change of current ~1.6 × 1015 A/s required for a fusion energy device called the Plasma Power Station with a Quasi Spherical Direct Drive fusion target.
机译:新发明的多兆扬逆二极管将许多电子束中的电流转换为用于驱动公共负载的单个磁绝缘传输线(Mit1)中的电流。电子通过透明阳极注入,穿过真空间隙,并在逆二极管的阴极中被吸收。阴极电流通过负载返回到阳极,并在阳极 - 阴极间隙中产生电气和磁场。通过在大部分逆二极管中通过自磁绝缘和通过自静电绝缘来防止计数器流电子流量,其中磁场不足。具有40 mA,4 meV,40ns电子束的二维模拟,在3.5ka / cm2电流密度,5度光束发散,高达60度注射角度显示出85%的注射电子束电流被捕获并送入mitl。探索性实验用2.5 mA,2.8meV,40ns电子束,在2ka / cm2时在注射时向阳极进行2ka / cm2,在未优化的逆二极管中获得70 +/- 10%的收集效率。逆二极管看起来具有将多个脉冲功率模块耦合到电流变化率的常见负载中的电位; 1015 A / S所需的融合能量装置称为等离子电站的等离子体发电站,具有准球形直接驱动融合目标。

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