Reproducing the effects of quantum deformation in the undeformed Jaynes-Cummings model
arXiv:2410.19118 · doi:10.1002/qute.202400559
Abstract
In the Jaynes-Cummings (JC) model, the time dependence in the coupling parameter allows changes in the forms of the Rabi oscillations. In the inverse problem approach (IPA), the time-dependent coupling parameter is obtained from the resulting population inversion. In this work, we employ the IPA to obtain a time-dependent coupling that reproduces the effects of -deformation in the population inversion of an undeformed JC. This is relevant because it may pave the way for simulating quantum deformation in the JC model and possibly enable an experimental verification in a setting where the coupling can be precisely controlled.
7 pages, 6 figures, matches published version
References in corpus (9)
- Exact Mapping of the 2+1 Dirac Oscillator onto the Jaynes-Cummings Model: Ion-Trap Experimental Proposal
- Chirality Quantum Phase Transition in the Dirac oscillator
- A review on quantum information processing in cavities
- Effects of quantum deformation on the spin-1/2 Aharonov-Bohm problem
- How general are time-local master equations?
- The 2D -Dirac oscillator
- A short introduction to -deformation
- Effects of quantum deformation on the Jaynes-Cummings and anti-Jaynes-Cummings models
- Lie structure of the Heisenberg-Weyl algebra