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Theory of laser-induced adiabat shaping in inertial fusion implosions: The decaying shock

机译:惯性融合内爆中的激光诱导绝热成形理论:衰减冲击

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The evolution of a decaying shock driven by a laser prepulse in inertial confinement fusion (ICF) capsules is investigated including the effects of mass ablation and residual ablation pressure. The adiabat (entropy) profile left behind by a decaying shock is calculated and compared with the results of one-dimensional simulations. It is found that the adiabat shape follows a simple power law of the areal density alpha=alpha(inn)(m(shell)/m)(delta)(a), where alpha(inn) is the shell inner surface adiabat, m(shell) is the initial total shell areal density, and m is the local shell areal density. The power law index delta(a) varies from 1.12 for prepulses in the 100 ps range to 1.20 for prepulses in the 300 ps range. This adiabat profile accurately reproduces the simulation results to within a few percent. A simple procedure aimed at designing a laser pulse inducing the maximum adiabat ratio between the outer- and inner-shell surface is also developed. ICF capsules with a shaped adiabat are expected to benefit from improved hydrodynamic stability while maintaining the same one-dimensional performance as flat adiabat shells. (C) 2003 American Institute of Physics. [References: 34]
机译:研究了惯性约束聚变(ICF)胶囊中由激光预脉冲驱动的衰减冲击的演变,包括质量消融和残余消融压力的影响。计算由衰减冲击留下的绝热(熵)分布,并将其与一维模拟的结果进行比较。发现绝热体的形状遵循简单的幂律,即面密度alpha = alpha(inn)(m(shell)/ m)δ(a),其中alpha(inn)是壳体的内表面绝热体,m (shell)是初始总壳面密度,m是局部壳面密度。幂律指数delta(a)从100 ps范围内的预脉冲的1.12变化到300 ps范围内的预脉冲的1.20变化。该绝热曲线可将模拟结果精确地复制到百分之几以内。还开发了一种旨在设计一种激光脉冲的简单方法,该激光脉冲可在外壳和内壳表面之间产生最大绝热比。具有成形绝热材料的ICF胶囊有望受益于改进的水动力稳定性,同时保持与平坦绝热材料壳体相同的一维性能。 (C)2003美国物理研究所。 [参考:34]

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