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首页> 外文期刊>Plasma physics and controlled fusion >Expansion of nanoplasmas and laser-driven nuclear fusion in single exploding clusters
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Expansion of nanoplasmas and laser-driven nuclear fusion in single exploding clusters

机译:单个爆炸簇中纳米等离子体的扩展和激光驱动的核聚变

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The expansion of laser-irradiated clusters or nanodroplets depends strongly on the amount of energy delivered to the electrons and can be controlled by using appropriately shaped laser pulses. In this paper, a self-consistent kinetic model is used to analyze the transition from quasi-neutral, hydrodynamic-like expansion regimes to the Coulomb explosion (CE) regime when increasing the ratio between the thermal energy of the electrons and the electrostatic energy stored in the cluster. It is shown that a suitable double-pump irradiation scheme can produce hybrid expansion regimes, wherein a slow hydrodynamic expansion is followed by a fast CE, leading to ion overtaking and producing multiple ion flows expanding with different velocities. This can be exploited to obtain intracluster fusion reactions in both homonuclear deuterium clusters and heteronuclear deuterium-tritium clusters, as also proved by three-dimensional molecular-dynamics simulations.
机译:激光辐照团簇或纳米液滴的膨胀在很大程度上取决于传递给电子的能量,可以通过使用适当形状的激光脉冲进行控制。在本文中,当增加电子的热能与存储的静电能之比时,使用自洽动力学模型来分析从拟中性,类似于流体力学的膨胀态到库仑爆炸(CE)态的转变。在集群中。结果表明,合适的双泵辐照方案可以产生混合膨胀方案,其中缓慢的流体动力膨胀之后是快速的CE,导致离子超载并产生以不同速度膨胀的多个离子流。这可以被利用来获得同核氘簇和异核氘-tri簇中的簇内融合反应,这也被三维分子动力学模拟所证明。

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