arXiv · 2411.19405
A Collision Operator for Field-Mediated Interactions in General Relativistic Kinetic Theory
Abstract
We develop a Hamiltonian framework for general relativistic kinetic theory on the cotangent bundle $T^{\ast}M$ of a Lorentzian (pseudo-Riemannian) manifold. Starting from the geodesic Hamiltonian $H$, we derive a Landau-type collision operator for self-gravitating particles undergoing binary interactions mediated by an arbitrary potential energy $V$, and couple the resulting kinetic stress-energy to the Einstein field equations to obtain the Landau-Einstein system. In the presence of a coordinate-time Killing symmetry we find a family of stationary states of the form $f \propto \gamma \exp[-\beta(H+\Phi)]\zeta(p_0)$, where $\Phi$ is the mean field, $\gamma=dt/d\tau$, $\beta$ is an inverse-temperature parameter, and $\zeta$ encodes symmetry-induced degeneracy.
Explore related subjects
Keep this discovery
Naoki Sato. 2024-11-28. A Collision Operator for Field-Mediated Interactions in General Relativistic Kinetic Theory. https://doi.org/10.1088/1361-6382%2Fae415d
Cite the original work for its findings. Save a collection to share your selection of sources.