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Increasing Load Current in Magnetized Liner Inertial Fusion Experiments*

机译:磁化衬里惯性聚变实验中增加负载电流*

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Magnetized Liner Inertial Fusion is a magneto-inertial fusion concept in which a metal cylindrical shell containing deuterium gas is axially magnetized, the fuel is heated with a laser, and the metal cylinder is imploded by the current of the Z Machine. In previous experiments, the axial magnetic field was 9-10 T, the laser energy absorbed in the fuel was less than 1 kJ, and the peak current flowing through the target was about 17 MA. These experiments produced fusion-relevant temperatures and densities at stagnation, up to 3e12 primary DD neutrons, and a magnetic field in the fuel sufficient to trap a sizable fraction of the fusion-produced tritons.
机译:磁化线惯性聚变是一种磁惯性聚变概念,其中将含氘气的金属圆柱壳轴向磁化,用激光加热燃料,并通过Z Machine的电流将金属圆柱内爆。在先前的实验中,轴向磁场为9-10 T,吸收在燃料中的激光能量小于1 kJ,流过目标的峰值电流约为17 MA。这些实验在停滞时产生了与熔合有关的温度和密度,高达3e12的DD中子,以及燃料中的磁场足以捕获聚变产生的tri核的相当一部分。

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