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The interaction of quasi-monoenergetic protons with pre-compressed inertial fusion fuels

机译:准单能质子与预压缩惯性聚变燃料的相互作用

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The interaction of a quasi-monoenergetic proton beam with a pre-compressed plasma is studied in the context of inertial fusion fast ignition (FI). Based on fundamental principles, a kinetic model is developed by considering hard collisions, nuclear scattering, and the contribution due to collective processes. The penetration depth, longitudinal straggling, and the transverse blooming are evaluated by solving the Boltzmann transport equation using the multiple scattering theory. The stopping power, transport scattering cross sections, and convenient expressions for the angular moments of the proton distribution function have been used in modeling the collisional proton transport in a three-dimensional (3D) Monte Carlo code. The transport of a proton beam with a quasi-monoenergetic energy E 10 MeV is studied for pre-compressed deuterium-tritium plasma with an average density of ρ 400 g cm ~(-3) and temperatures T 1 keV, 5 keV, and 10 keV. The net effects of multiple scattering are to reduce the penetration from 1.028 to 0.828 g cm ~(-2) with range straggling ρ Σ R 0.044 g cm ~(-2) and beam blooming ρ Σ B 0.272 g cm ~(-2), for 10 MeV protons in a ρ 400 g cm ~(-3) plasma at T 5 keV. This model can be used for quantitatively assessing ignition requirements for proton fast ignition.
机译:在惯性聚变快速点火(FI)的背景下研究了准单能质子束与预压缩等离子体的相互作用。基于基本原理,通过考虑硬碰撞,核散射和集体过程的贡献来建立动力学模型。通过使用多重散射理论求解玻尔兹曼输运方程,可以评估渗透深度,纵向散布和横向起霜。在三维(3D)蒙特卡洛代码中对碰撞质子传输进行建模时,已使用了阻止力,传输散射截面和质子分布函数的角矩的便捷表达式。对于平均密度为ρ400 g cm〜(-3)且温度为T 1 keV,5 keV和10的预压缩氘-plasma等离子体,研究了准单能E 10 MeV的质子束的传输。 keV。多次散射的净效应是将散度从ρΣR 0.044 g cm〜(-2)和射束弥散ρΣB 0.272 g cm〜(-2)的穿透率从1.028降低到0.828 g cm〜(-2) ,在T 5 keV下在ρ400 g cm〜(-3)等离子体中具有10 MeV质子。该模型可用于定量评估质子快速点火的点火要求。

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