Amelino-camelia DSR effects on Landau levels of Dirac pairs with non-minimal coupling
Creators
- 1. Department of Basic Sciences, Erzurum Technical University, Erzurum, 25050, Türkiye
- 2. Department of Physics, Eastern Mediterranean University, G. Magusa, North Cyprus, Mersin 10, Turkey
Description
We present an analytical study of a fermion-antifermion ( ) system governed by a two-body Dirac equation (TBDE) in -dimensional Minkowski spacetime, incorporating Dirac oscillator (DO) interactions and a uniform magnetic field. We work within Amelino-Camelia's framework, capturing leading-order Planck-scale effects while preserving the TBDE's first-order structure. Separation of center-of-mass and relative coordinates reduces the problem to a Whittaker-type radial equation, yielding a closed-form energy spectrum. DSR induces uniform energy shifts that grow with radial excitation but preserve mass symmetry between particle and antiparticle. A critical magnetic field is identified, at which Planck-scale effects vanish and the spectrum collapses to the rest mass threshold, indicating suppressed spatial resolution. These findings provide a consistent platform for probing Planckian signatures in relativistic bound states and affirm the robustness of spectral symmetries under DSR.
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10052_2025_Article_14792_a.pdf
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