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Three-dimensional fast electron transport for ignition-scale inertial fusion capsules

机译:点火级惯性聚变胶囊的三维快速电子传输

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摘要

Three-dimensional (3D) hybrid PIC simulations are presented to study electron energy transport and deposition in a full-scale fast ignition configuration. Multi-prong core heating close to ignition is found when a few giga-amperes, few peta-watts beam is injected. Resistive beam filamentation in the corona seeds the 3D current pattern that penetrates the core. Ohmic heating is important in the low-density corona, while classical Coulomb deposition heats the core. Here highest energy densities (few Tbar at 10 keV) are observed at densities above 200 g cm(-3). Energy coupling to the core ranges from 20% to 30%; it is enhanced by beam collimation and decreases when raising the beam particle energy from 1.5 to 5.5 MeV.
机译:提出了三维(3D)混合PIC仿真,以研究全尺寸快速点火配置中的电子能量传输和沉积。当注入几吉安,几皮瓦的光束时,会发现接近点火的多管芯发热。电晕中的电阻束丝状化会产生3D电流模式,该电流模式会穿透磁芯。欧姆加热在低密度电晕中很重要,而经典的库仑沉积会加热磁芯。在此,在高于200 g cm(-3)的密度下观察到最高的能量密度(在10 keV时很少有Tbar)。与核心的能量耦合范围为20%至30%;它通过束准直增强,而当束粒子能量从1.5 MeV升高到5.5 MeV时降低。

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