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The collisionless hydrodynamics: On the nonexistence of collisionless shocks

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arxiv 2501.17341 v1 pith:2WIOLUCJ submitted 2025-01-28 astro-ph.HE

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keywords collisionlessshockhydrodynamicstimecontinuousexistgrowsinstead
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Collisionless shocks, essential for astrophysics, perhaps do not exist as statistically stationary solutions. If so, any quantitative statement about a collisionless shock should be qualified by the age of the shock. A theoretical description of the upstream of the 1+1 dimensional electrostatic collisionless shock is developed -- collisionless hydrodynamics. Peculiarities of collisionless hydrodynamics prevent a shock formation when a piston is driven into cold plasma. An exact self-similar solution is found instead; the spatial extent of the solution grows linearly in time. Direct numerical simulations of plasma kinetics in 1+1 dimensions confirm the hydrodynamic result -- a statistically steady collisionless shock doesn't exist. Instead, at each fixed time, there is a continuous succession in space of marginally stable velocity distribution functions. The spatial support of this continuous succession grows linearly in time.

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  1. Ultra-long simulations of collisionless relativistic shocks in front-comoving frame: evidence for a steady state and its properties

    astro-ph.HE 2026-07 conditional novelty 7.0 of 10

    In ultra-long front-comoving PIC simulations of relativistic pair shocks, the downstream region reaches a steady state controlled only by the upstream temperature, and Fermi acceleration saturates with no power-law ta...

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