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Plasma source test and simulation results for the underdense plasma lens experiment at the UCLA Neptune Laboratory

机译:加州大学洛杉矶分校海王星实验室进行等离子透镜实验的等离子体源测试和模拟结果

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The planned plasma lens experiment at the UCLA Neptune Laboratory is described. In the experiment, electron beams with an energy of 16 MeV, a charge of 4 nC, and a pulse duration of 30 ps [full-width at half-maximum (FWHM)] are designed to be produced from the 1.625-cell photoinjector radio-frequency gun (f=2.856 GHz) and PWT linac in the Neptune. The generated beams are passed through a thin plasma with a density of low 10/sup 12/ cm/sup -3/ range and a thickness of a few centimeters. For this experiment, a LaB/sub 6/-based discharge plasma source was developed and tested. In this paper, the overview of the planned plasma lens experiment and the test results of the plasma source for various conditions are presented. In addition, computer simulations with a 2-1/2 dimensional particle-in-cell code (MAGIC) were performed and the simulation results are shown.
机译:描述了在UCLA海王星实验室计划的等离子透镜实验。在实验中,从1.625个单元的光注入器无线电产生了电子束,其能量为16 MeV,电荷为4 nC,脉冲持续时间为30 ps [半最大全宽(FWHM)]。频率枪(f = 2.856 GHz)和海王星中的PWT直线加速器。所产生的束穿过薄的等离子体,该等离子体具有低10 / sup 12 / cm / sup -3 /范围的密度和几厘米的厚度。对于此实验,开发并测试了基于LaB / sub 6 /的放电等离子体源。本文介绍了计划中的等离子透镜实验的概述以及各种条件下等离子源的测试结果。此外,还进行了使用2-1 / 2维单元内粒子代码(MAGIC)的计算机仿真,并显示了仿真结果。

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