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arXiv:2609.35164·v1·Nuclear Theory

Relaxation-Time Boltzmann Solutions Without Truncations

Tiago Nunes da Silva · Jadna L. Barauna · Giorgio Torrieri

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Abstract

The relaxation-time Boltzmann equation governs relativistic matter far from equilibrium, but existing approaches rely on finite-order truncations that break down in this regime. We introduce ShARK (Stochastic Advection Relaxation Kinetics), the first fully 3D Monte Carlo kinetic framework to capture exact, far-from-equilibrium ultrarelativistic dynamics for arbitrary initial conditions while directly enforcing target transport coefficients, converging to the exact Anderson-Witting solution. Validated against the Bjorken and Gubser flows, the framework reproduces the exact kinetic result where truncated methods fail.

Comments: 7 pages, 4 figures