Thermodynamical properties of an ideal gas in a traversable wormhole
arXiv:2302.05492 · doi:10.1088/1361-6382/ad0421
Abstract
In this work, we analyze the thermodynamic properties of non--interacting particles under influence of the gravitational field of a traversable wormhole. In particular, we investigate how the thermodynamic quantities are affected by the Ellis wormhole geometry, considering three different regions to our study: asymptotically far, close to the throat, and at the throat. The thermodynamic quantities turn out to depend strongly on parameter that controls the wormhole throat radius. By varying it, there exist an expressive modification in the thermodynamic state quantities, exhibiting both usual matter and dark energy--like behaviors. Finally, the interactions are regarded to the energy density and it seems to indicate that it "cures" the dark energy--like features.
29 pages and 18 figures
References in corpus (25)
- Lorentz-violation-induced arrival delays of cosmological particles
- Instability of wormholes supported by a ghost scalar field. I. Linear stability analysis
- Lorentz Violation for Photons and Ultra-High Energy Cosmic Rays
- Traversable Wormholes Supported by GUP Corrected Casimir Energy
- Wormholes without exotic matter: quasinormal modes, echoes and shadows
- Arbitrarily long-lived quasinormal modes in a wormhole background
- Evolving Lorentzian wormholes supported by phantom matter and cosmological constant
- Wormholes minimally violating the null energy condition
- On the emergence of Lorentzian signature and scalar gravity
- Lorentz-violating contributions of the Carroll-Field-Jackiw model to the CMB anisotropy
- Thermodynamics and evaporation of a modified Schwarzschild black hole in a non--commutative gauge theory
- Higher-derivative Lorentz-breaking dispersion relations: a thermal description
- Finite Temperature behavior of the CPT-even and parity-even electrodynamics of the Standard Model Extension
- High energy collision of two particles in wormhole spacetimes
- Thermal analysis of photon-like particles in rainbow gravity
- Particles in Loop Quantum Gravity formalism: a thermodynamical description
- Thermodynamics of massless particles in curved spacetime
- Thermodynamics of a quantum ring modified by Lorentz violation
- The Classical and Quantum Mechanics of a Particle on a Knot
- The Lorentz-violating real scalar field at thermal equilibrium
- On the traversability of wormhole solutions in asymptotically safe gravity
- Relativistic Bose-Einstein condensate in the rainbow gravity
- Generalized Ellis-Bronnikov wormholes in asymptotically safe gravity
- Quantum gases on a torus
- Bose-Einstein condensation in Hořava-Lifshitz theory
Cited by in corpus (18)
- An exact stationary axisymmetric vacuum solution within a metric--affine bumblebee gravity
- Gravitational signatures of a non--commutative stable black hole
- Gravitational traces of bumblebee gravity in metric-affine formalism
- Thermal analysis of photon-like particles in rainbow gravity
- Analysis of a regular black hole in Verlinde's gravity
- Modified particle dynamics and thermodynamics in a traversable wormhole in bumblebee gravity
- Influence of GUP corrected Casimir energy on zero tidal force wormholes in modified teleparallel gravity with matter coupling
- Dunkl-Pauli Equation in the Presence of a Magnetic Field
- Dark matter signatures of black holes with Yukawa potential
- Implications of a Simpson-Visser solution in Verlinde's framework
- Geodesics, accretion disk, gravitational lensing, time delay, and effects on neutrinos induced by a non-commutative black hole
- Non-commutativity in Hayward spacetime
- Particle motion and thermal effects around a Kalb-Ramond black hole
- Imprints of non-commutativity on charged black holes
- An anisotropic rotating cosmic string with Lorentz violation: thermodynamics and Landau levels
- Fermions with Electric Dipole Moment in curved spacetime
- Gauge-covariant Raychaudhuri dynamics for spin-nondegenerate Lorentz-violating congruences
- Dynamical wormholes