Effects of quantum deformation on the Jaynes-Cummings and anti-Jaynes-Cummings models
arXiv:2106.16244 · doi:10.1103/PhysRevA.105.013703
Abstract
The theory of non-Hermitian systems and the theory of quantum deformations have attracted a great deal of attention in the past decades. In general, non-Hermitian Hamiltonians are constructed by an ad hoc manner. Here, we study the (2+1) Dirac oscillator and show that in the context of the -deformed Poincaré-Hopf algebra its Hamiltonian is non-Hermitian but has real eigenvalues. The non-Hermiticity stems from the -deformed algebra. From the mapping in Bermudez et al., Phys. Rev. A 76, 041801(R) (2007), we propose the -Jaynes-Cummings and -anti-Jaynes-Cummings models, which describe an interaction between a two-level system with a quantized mode of an optical cavity in the -deformed context. We find that the -deformation modifies the Zitterbewegung frequencies and the collapses and revivals of quantum oscillations. In particular, the total angular momentum in the direction is not conserved anymore, as a direct consequence of the deformation.
9 pages, 2 figures, matches published version
References in corpus (11)
- Making Sense of Non-Hermitian Hamiltonians
- Observation of arbitrary topological windings of a non-Hermitian band
- Dirac Equation and Quantum Relativistic Effects in a Single Trapped Ion
- Zitterbewegung of electronic wave packets in semiconductor nanostructures
- Exact Mapping of the 2+1 Dirac Oscillator onto the Jaynes-Cummings Model: Ion-Trap Experimental Proposal
- Fock space, quantum fields and kappa-Poincaré symmetries
- Non-relativistic limit in the 2+1 Dirac Oscillator: A Ramsey Interferometry Effect
- Effects of quantum deformation on the spin-1/2 Aharonov-Bohm problem
- Remarks on the Dirac oscillator in dimensions
- The 2D -Dirac oscillator
- A short introduction to -deformation
Cited by in corpus (6)
- Exploring Supersymmetry: Interchangeability Between Jaynes-Cummings and Anti-Jaynes-Cummings Models
- First-order transitions in spin chains coupled to quantum baths
- Revisiting the Jaynes-Cummings model with time-dependent coupling
- Para-particle oscillator simulations on a trapped ion quantum computer
- Entanglement between uncoupled modes with time-dependent complex frequencies
- Reproducing the effects of quantum deformation in the undeformed Jaynes-Cummings model