The diffusion equation is compatible with special relativity
arXiv:2601.19464 · doi:10.1103/rkz9-xps2
Abstract
Due to its parabolic character, the diffusion equation exhibits instantaneous spatial spreading, and becomes unstable when Lorentz-boosted. According to the conventional interpretation, these features reflect a fundamental incompatibility with special relativity. In this Letter, we show that this interpretation is incorrect by demonstrating that any smooth and sufficiently localized solution of the diffusion equation is the particle density of an exact solution of the relativistic Vlasov-Fokker-Planck equation. This establishes the existence of a causal, stable, and thermodynamically consistent relativistic kinetic theory whose hydrodynamic sector is governed exactly by diffusion at all wavelengths. We further demonstrate that the standard arguments for instability arise from considering solutions that admit no counterpart in kinetic theory, and that apparent violations of causality disappear once signals are defined in terms of the underlying microscopic data.
6 pages, 0 figures, published in PRL (see https://journals.aps.org/prl/abstract/10.1103/rkz9-xps2)
References in corpus (27)
- Relativistic viscous hydrodynamics, conformal invariance, and holography
- Derivation of transient relativistic fluid dynamics from the Boltzmann equation
- First-order relativistic hydrodynamics is stable
- Relativistic Brownian Motion
- Nonlinear causality of general first-order relativistic viscous hydrodynamics
- Does stability of relativistic dissipative fluid dynamics imply causality?
- Origin of the Relaxation Time in Dissipative Fluid Dynamics
- Holography and hydrodynamics with weakly broken symmetries
- Gapped momentum states
- On the Causality and Stability of the Relativistic Diffusion Equation
- When the entropy has no maximum: A new perspective on the instability of the first-order theories of dissipation
- Theories of Relativistic Dissipative Fluid Dynamics
- Rigorous bounds on transport from causality
- Bounds on transport from hydrodynamic stability
- Bulk viscosity in relativistic fluids: from thermodynamics to hydrodynamics
- Applying the Gibbs stability criterion to relativistic hydrodynamics
- Unified Extended Irreversible Thermodynamics and the stability of relativistic theories for dissipation
- Dispersion relations alone cannot guarantee causality
- Relativistic Bulk Rheology: From Neutron Star Mergers to Viscous Cosmology
- The stochastic relativistic advection diffusion equation from the Metropolis algorithm
- The Hydrohedron: Bootstrapping Relativistic Hydrodynamics
- Universality Classes of Relativistic Fluid Dynamics: Foundations
- Heat propagation in rotating relativistic bodies
- Noncovariant parabolic theories of relativistic diffusion
- Simple holographic dual of the Maxwell-Cattaneo model & the fate of KMS symmetry for non-hydrodynamic modes
- Plasma oscillations within Israel-Stewart theory
- The quasi-normal modes of relativistic Fokker-Planck kinetic theory