Fermion-antifermion pairs in a magnetized space-time with non-zero cosmological constant
Creators
- 1. Department of Basic Sciences, Erzurum Technical University, Erzurum, Türkiye
- 2. Department of Physics, Eastern Mediterranean University, G. Magusa, Mersin 10, Türkiye
Description
We analyze a fermion-antifermion pair within the (2+1)-dimensional Bonnor-Melvin magnetic (BMM) spacetime featuring a nonzero cosmological constant ($\Lambda >0$). To do this, we rigorously investigate analytical solutions to the corresponding form of a fully-covariant two-body Dirac equation. We derive a non-perturbative wave equation and obtain an exact closed-form analytical solution for the system under consideration. In this magnetic background spacetime, described by a surface with positive Gaussian curvature, we noticed that fermion-antifermion pairs display a collective behavior resembling that of a single quantum oscillator, carrying a total rest mass of the particles and oscillating with a frequency (${\omega }_{o}\propto \Lambda $), even in the absence of mutual interaction between the particles. This indicates a compelling correlation between the cosmological constant and the energy spectrum of fermion-antifermion systems, implying connections between quantum realms and cosmology.
Files
j.nuclphysb.2024.116571.pdf
Files
(481.7 kB)
| Name | Size | Download all |
|---|---|---|
|
md5:6b279e091d72d6a4c1444589d70b827f
|
481.7 kB | Preview Download |