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Pulsed 4-MeV electron injector with an excimer laser driven photocathode

机译:带有受激准分子激光驱动的光电阴极的脉冲4-MeV电子注入器

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The Relativistic Electron-Beam Experiment injector at the Los Alamos National Laboratory is used to generate a 4-MV pulse across an anode-cathode gap. A simple metal photocathode is illuminated by a pulsed excimer laser. Time-resolved measurements of current, voltage, and current density were made. The resulting quantum efficiencies are being used to obtain the required laser power for a multikiloampere, high-brightness electron gun to be used as an injector for a linear induction accelerator. It is shown that an aluminum photocathode capable of emitting 3.3 kA would require an ArF laser operating at 650 kW/cm/sup 2/. This would generate 72 A/cm/sup 2/, and the laser energy is well below the plasma threshold. To construct a DARHT (Dual Axis Radiographic Hydrotest Facility) injector (3.3 kA, 60 ns), a 1.75-J ArF laser would be required. This type of laser is within current electron-beam-pumped laser technology.
机译:洛斯阿拉莫斯国家实验室的相对论电子束实验注射器用于在阳极-阴极间隙上产生4-MV脉冲。一个简单的金属光电阴极由脉冲准分子激光照射。进行时间分辨的电流,电压和电流密度测量。所得的量子效率可用于获得多千安培,高亮度电子枪用作线性感应加速器的喷射器所需的激光功率。结果表明,能够发射3.3 kA的铝光电阴极需要以650 kW / cm / sup 2 /运行的ArF激光器。这将产生72 A / cm / sup 2 /,并且激光能量远低于等离子体阈值。要构建DARHT(双轴射线照相水力测试设备)注射器(3.3 kA,60 ns),需要使用1.75-J ArF激光器。这种类型的激光属于当前的电子束泵浦激光技术。

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