About the temperature of moving bodies
arXiv:0905.1650 · doi:10.1209/0295-5075/89/30001
Abstract
Relativistic thermodynamics is constructed from the point of view of special relativistic hydrodynamics. A relativistic four-current for heat and a general treatment of thermal equilibrium between moving bodies is presented. The different temperature transformation formulas of Planck and Einstein, Ott, Landsberg and Doppler appear upon particular assumptions about internal heat current.
revised, 11 pages, 5 figures
References in corpus (13)
- Relativistic Brownian Motion
- Extracting the QGP viscosity from RHIC data -- a status report from viscous hydrodynamics
- Thermal equilibrium and statistical thermometers in special relativity
- Causal Viscous Hydrodynamics for Central Heavy-Ion Collisions
- Relativistic Dissipative Hydrodynamics: A Minimal Causal Theory
- Nonextensive hydrodynamics for relativistic heavy-ion collisions
- Dissipative effects from transport and viscous hydrodynamics
- Relativistic hydrodynamics - causality and stability
- Entropy production in high-energy heavy-ion collisions and the correlation of shear viscosity and thermalization time
- Statistical thermodynamics of a two dimensional relativistic gas
- On the Question of Temperature Transformations under Lorentz and Galilei Boosts
- Extensivity of Irreversible Current and Stability in Causal Dissipative Hydrodynamics
- A thermodynamic approach to the relaxation of viscosity and thermal conductivity
Cited by in corpus (10)
- First order and stable relativistic dissipative hydrodynamics
- The zeroth law of thermodynamics in special relativity
- Fluid dynamical equations and transport coefficients of relativistic gases with non-extensive statistics
- Galilean relativistic fluid mechanics
- Microinertia and internal variables
- Holographic fluids: a thermodynamic road to quantum physics
- A note on the relativistic temperature
- What happens to the chemical equilibrium in case of a reference frame change
- Study on relativistic transformations for thermodynamic quantities: Boltzmann-Gibbs and Tsallis blast-wave models
- A Collision Operator for Field-Mediated Interactions in General Relativistic Kinetic Theory