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首页> 外文期刊>Physics of plasmas >Proton-beam driven fast ignition of inertially confined fuels: Reduction of the ignition energy by the use of two proton beams with radially shaped profiles
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Proton-beam driven fast ignition of inertially confined fuels: Reduction of the ignition energy by the use of two proton beams with radially shaped profiles

机译:质子束驱动的惯性约束燃料快速点火:通过使用两个径向形状的质子束来减少点火能量

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Fast ignition of a spherical compressed deuterium-tritium assembly induced by the energy deposition of laser-accelerated proton beams is considered. An efficient way to reduce the ignition energy consists of using a two proton beams scheme [M. Temporal, Phys Plasmas 13, 122704 (2006)]. For a uniformly compressed fuel at 500 g/cm(3) irradiated by proton beams with Maxwellian energy distribution with a temperature of 4 MeV, the ignition energy is 10 kJ using only one proton beam and reduces to a total of 8 kJ with the two-beam scheme. Further reduction of the ignition energy is found by using a first beam with annular radial profile and a second beam with the uniform radial profile. It is found that the first beam causes some additional fuel compression and confinement that decrease the total beam energy required for the ignition to 6 kJ, which is 40% smaller than in the case of a single beam with uniform radial profile. (c) 2008 American Institute of Physics.
机译:考虑了由激光加速质子束的能量沉积引起的球形压缩氘-assembly组件的快速点火。减少点火能量的有效方法是使用两个质子束方案[M. Temporal,Phys Plasmas 13,122704(2006)。对于质子束以麦克斯韦能量分布,温度为4 MeV的质子束辐照的500 g / cm(3)均匀压缩的燃料,仅使用一个质子束的点火能量为10 kJ,而使用两个质子束降低到总计8 kJ -光束方案。通过使用具有环形径向轮廓的第一梁和具有均匀径向轮廓的第二梁,发现了点火能量的进一步降低。发现第一束引起一些额外的燃料压缩和限制,从而将点火所需的总束能量降低到6 kJ,这比具有均匀径向轮廓的单束的情况小40%。 (c)2008年美国物理研究所。

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