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arXiv:1203.5479·v5·High Energy Physics — Phenomenology

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

S. Bondarenko🇮🇱 · K. Komoshvili🇮🇱

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Abstract

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, Boltzmann equation is solved for self-consistent field (Vlasov's equation) in linear approximation for the case of a gas under external pressure and the corresponding change of Knudsen number of the system is calculated.

Comments: 24 pages, 2 figure

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