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Gas–liquid transition in the model of particles interacting at high energy

机译:在高能相互作用的粒子模型中的气液转变

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摘要

An application of the ideas of the inertial confinement fusion process in the case of particles interacting at high energy is investigated. A possibility of the gas–liquid transition in the gas is considered using different approaches. In particular, a shock wave description of interactions between particles is studied and a self-similar solution of Euler’s equation is discussed. Additionally, the Boltzmann equation is solved for a self-consistent field (Vlasov’s equation) in the linear approximation for the case of a gas under external pressure and the corresponding change of the Knudsen number of the system is calculated.
机译:研究了惯性约束聚变过程的思想在高能粒子相互作用的情况下的应用。可以采用不同的方法来考虑气体中气液过渡的可能性。特别是,研究了粒子之间相互作用的冲击波描述,并讨论了欧拉方程的自相似解。另外,对于在外部压力下气体的线性近似中,求解了一个自洽场的玻耳兹曼方程(弗拉索夫方程),并计算了系统的努森数的相应变化。

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