English

Thermal Casimir effect in $\kappa$-Minkowski space-time

High Energy Physics - Theory 2026-02-13 v2

Abstract

We study the finite temperature Casimir effect for parallel plates in the κ\kappa-Minkowski space-time. Using the Matsubara formalism and imposing the Dirichlet boundary conditions on a massless κ\kappa-scalar field, we compute the κ\kappa-deformed corrections to thermal Casimir free energy, pressure, entropy, and internal energy. Our results demonstrate that space-time non-commutativity enhances the attractive nature of the thermal Casimir force while preserving thermodynamic consistency; the system satisfies the Nernst theorem and laws of thermodynamics remain intact in κ\kappa-deformed space-time. Our analysis yields an upper bound on the deformation parameter as a1018ma\leq10^{-18}m. Furthermore, our results indicate that non-commutative effects become experimentally observable in Casimir effect studies when the ratio of the non-commutative scale to plate separation satisfies a/L1012a/L\leq 10^{-12}. We also obtain the expression for Stefan-Boltzmann's law in κ\kappa-Minkowski space-time.

Keywords

Cite

@article{arxiv.2512.10463,
  title  = {Thermal Casimir effect in $\kappa$-Minkowski space-time},
  author = {Suman Kumar Panja and Vishnu Rajagopal},
  journal= {arXiv preprint arXiv:2512.10463},
  year   = {2026}
}
R2 v1 2026-07-01T08:20:15.130Z