Breakdown of hydrodynamics in a one-dimensional cold gas

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Main Authors: Holovatch, Taras, Kozitsky, Yuri, Pilorz, Krzysztof, Holovatch, Yurij
Format: Preprint
Published: 2025
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author Holovatch, Taras
Kozitsky, Yuri
Pilorz, Krzysztof
Holovatch, Yurij
author_facet Holovatch, Taras
Kozitsky, Yuri
Pilorz, Krzysztof
Holovatch, Yurij
contents The following model is studied analytically and numerically: point particles with masses $m,μ,m, \dots$ ($m\geqμ$) are distributed over the positive half-axis. Their dynamics is initiated by giving a positive velocity to the particle located at the origin; in its course the particles undergo elastic collisions. We show that, for certain values of $m/μ$, starting from the initial state where the particles are equidistant the system evolves in a hydrodynamic way: (i) the rightmost particle (blast front) moves as $t^δ$ with $δ< 1$; (ii) recoiled particles behind the front enter the negative half-axis; (iii) the splatter -- the particles with locations $x\leq 0$ -- moves in the ballistic way and eventually takes over the whole energy of the system. These results agree with those obtained in S. Chakraborti et al, SciPost Phys. 2022, 13, 074, for $m/μ=2$ and random initial particle positions. At the same time, we explicitly found the collection of positive numbers $\{\mathcal{M}_i, i \in \mathbf{N} \}$ such that, for $m/μ= \mathcal{M}_i$, $i\leq 700$, the following holds: (a) the splatter is absent; (b) the number of simultaneously moving particles is at most three; (c) the blast front moves in the ballistic way. However, if, similarly as in S. Chakraborti et al, the particle positions are sampled from a uniformly distributed ensemble, for $m/μ= \mathcal{M}_i$ the system evolves in a hydrodynamic way.
format Preprint
id arxiv_https___arxiv_org_abs_2510_17428
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Breakdown of hydrodynamics in a one-dimensional cold gas
Holovatch, Taras
Kozitsky, Yuri
Pilorz, Krzysztof
Holovatch, Yurij
Statistical Mechanics
Chaotic Dynamics
Fluid Dynamics
The following model is studied analytically and numerically: point particles with masses $m,μ,m, \dots$ ($m\geqμ$) are distributed over the positive half-axis. Their dynamics is initiated by giving a positive velocity to the particle located at the origin; in its course the particles undergo elastic collisions. We show that, for certain values of $m/μ$, starting from the initial state where the particles are equidistant the system evolves in a hydrodynamic way: (i) the rightmost particle (blast front) moves as $t^δ$ with $δ< 1$; (ii) recoiled particles behind the front enter the negative half-axis; (iii) the splatter -- the particles with locations $x\leq 0$ -- moves in the ballistic way and eventually takes over the whole energy of the system. These results agree with those obtained in S. Chakraborti et al, SciPost Phys. 2022, 13, 074, for $m/μ=2$ and random initial particle positions. At the same time, we explicitly found the collection of positive numbers $\{\mathcal{M}_i, i \in \mathbf{N} \}$ such that, for $m/μ= \mathcal{M}_i$, $i\leq 700$, the following holds: (a) the splatter is absent; (b) the number of simultaneously moving particles is at most three; (c) the blast front moves in the ballistic way. However, if, similarly as in S. Chakraborti et al, the particle positions are sampled from a uniformly distributed ensemble, for $m/μ= \mathcal{M}_i$ the system evolves in a hydrodynamic way.
title Breakdown of hydrodynamics in a one-dimensional cold gas
topic Statistical Mechanics
Chaotic Dynamics
Fluid Dynamics
url https://arxiv.org/abs/2510.17428