Effects of a Maximal Energy Scale in Thermodynamics for Photon Gas and Construction of Path Integral
arXiv:1411.1839 · doi:10.3842/SIGMA.2014.104
Abstract
In this article, we discuss some well-known theoretical models where an observer-independent energy scale or a length scale is present. The presence of this invariant scale necessarily deforms the Lorentz symmetry. We study different aspects and features of such theories about how modifications arise due to this cutoff scale. First we study the formulation of energy-momentum tensor for a perfect fluid in doubly special relativity (DSR), where an energy scale is present. Then we go on to study modifications in thermodynamic properties of photon gas in DSR. Finally we discuss some models with generalized uncertainty principle (GUP).
This is a review article based on our works arXiv:1002.0192, arXiv:0908.0413, arXiv:1205.3919; v2: text overlap with gr-qc/0207085 removed
References in corpus (11)
- Universality of Quantum Gravity Corrections
- Very Special Relativity
- General Very Special Relativity is Finsler Geometry
- Deformed Special Relativity and Deformed Symmetries in a Canonical Framework
- Towards Quantum Noncommutative -deformed Field Theory
- Multi-Particle States in Deformed Special Relativity
- Thermodynamics of Photon Gas with an Invariant Energy Scale
- Doubly special relativity and translation invariance
- Thermodynamics of a photon gas and deformed dispersion relations
- Symmetries of Snyder--de Sitter space and relativistic particle dynamics
- Quantum gravity effects on space-time