General relativistic statistical mechanics
arXiv:1209.0065 · doi:10.1103/PhysRevD.87.084055
Abstract
Understanding thermodynamics and statistical mechanics in the full general relativistic context is an open problem. I give tentative definitions of equilibrium state, mean values, mean geometry, entropy and temperature, which reduce to the conventional ones in the non-relativistic limit, but remain valid for a general covariant theory. The formalism extends to quantum theory. The construction builds on the idea of thermal time, on a notion of locality for this time, and on the distinction between global and local temperature. The last is the temperature measured by a local thermometer, and is given by kT = hbar d tau/ds, with k the Boltzmann constant, hbar the Planck constant, ds proper time and d tau the equilibrium thermal time.
A tentative second step in the thermal time direction, 10 years after the paper with Connes. The aim is the full thermodynamics of gravity. The language of the paper is a bit technical: look at the Appendix first (expanded in version 2)
References in corpus (6)
- A "general boundary" formulation for quantum mechanics and quantum gravity
- Thermal time and the Tolman-Ehrenfest effect: temperature as the "speed of time"
- Group Integral Techniques for the Spinfoam Graviton Propagator
- Path integral representation of spin foam models of 4d gravity
- Gravitation and vacuum entanglement entropy
- Effective Conformal Descriptions of Black Hole Entropy: A Review
Cited by in corpus (26)
- Geometric temperature and entropy of quantum isolated horizons
- Statistical Equilibrium in Quantum Gravity: Gibbs states in Group Field Theory
- Death and resurrection of the zeroth principle of thermodynamics
- A covariant action principle for dissipative fluid dynamics: From formalism to fundamental physics
- Statistical equilibrium of tetrahedra from maximum entropy principle
- Coupling and thermal equilibrium in general-covariant systems
- Statistical mechanics of reparametrization-invariant systems. It takes three to tango
- The irreversibility of relativistic time-dilation
- White-dwarfs equation of state and structure: The effect of temperature
- Covariant Momentum Map Thermodynamics for Parametrized Field Theories
- Plasma living in a curved surface at some special temperature
- The boundary is mixed
- Entropy bound for the photon gas in noncommutative spacetime
- The Effect of Spacetime Curvature on Statistical Distributions
- Quantum fluctuation theorem in a curved spacetime
- Quantum and Relativistic corrections to Maxwell-Boltzmann ideal gas model from a Quantum Phase Space approach
- Statistical Gravity and entropy of spacetime
- Small Spins of Primordial Black Holes from Random Geometries: Bekenstein-Hawking Entropy and Gravitational Wave Observations
- Entropy theorems in classical mechanics, general relativity, and the gravitational two-body problem
- Landauer principle and the second law in a relativistic communication scenario
- Time Parametrizations in Long-Range Interacting Bose-Einstein Condensates
- Quantization due to the time evolution, with applications to Quantum Yang-Mills theory, Quantum Gravity and Classical Statistical Field Theory
- On Non-Equilibrium Thermodynamics of Space-Time and Quantum Gravity
- Revealing Noncanonical Hamiltonian Structures in Relativistic Fluid Dynamics
- A Collision Operator for Field-Mediated Interactions in General Relativistic Kinetic Theory
- Relativistic Lévy processes