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Numerical simulations of self-pinched transport of intense ion beams in low-pressure gases

机译:低压气体中强离子束自夹持传输的数值模拟

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The self-pinched transport of intense ion beams in low-pressure background gases is studied using numerical simulations and theoretical analysis. The simulations are carried out in a parameter regime that is similar to proton beam experiments being fielded on the Gamble II pulsed power generator [J. D. Shipman, Jr., IEEE Trans. Nucl. Sci. NS-18, 243 (1971)] at the Naval Research Laboratory. Simulation parameter variations provide information on scaling with background gas species, gas pressure, beam current, beam energy, injection angles, and boundaries. The simulation results compare well with simple analytic scaling arguments for the gas pressure at which the effective net current should peak and with estimates for the required confinement current. The analysis indicates that the self-pinched transport of intense proton beams produced on Gamble II (1.5 MeV, 100 kA, 3 cm radius) is expected to occur at gas pressures between 30 and 80 mTorr of He or between 3 and 10 mTorr of Ar. The significance of these results to ion-driven inertial confinement fusion is discussed. (C) 1999 American Institute of Physics. [S1070-664X(99)03610-1]. [References: 36]
机译:利用数值模拟和理论分析研究了强离子束在低压背景气体中的自收缩传输。仿真是在类似于Gamble II脉冲发电机上进行的质子束实验的参数范围内进行的[J. D. Shipman,Jr.,IEEE Trans。核仁科学NS-18,第243页(1971)]。模拟参数的变化提供了有关背景气体种类,气体压力,束流,束能量,注入角和边界的缩放比例的信息。仿真结果与有效净电流应达到峰值的气体压力的简单解析比例参数以及所需限制电流的估计值进行了很好的比较。分析表明,预期在Gamble II(1.5 MeV,100 kA,3 cm半径)上产生的强质子束的自收缩传输会在气压为He的30至80 mTorr或Ar为3至10 mTorr的气压下发生。讨论了这些结果对离子驱动惯性约束聚变的意义。 (C)1999美国物理研究所。 [S1070-664X(99)03610-1]。 [参考:36]

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