Dynamics of entropy and nonclassicality features of the interaction between a -type four-level atom and a single-mode field in the presence of intensity-dependent coupling and Kerr nonlinearity
arXiv:1408.2968 · doi:10.1088/0253-6102/62/3/22
Abstract
The interaction between a -type four-level atom and a single-mode field in the presence of Kerr medium with intensity-dependent coupling involving multi-photon processes has been studied. Using the generalized (nonlinear) Jaynes-Cummings model, the exact analytical solution of the wave function for the considered system under particular condition, has been obtained when the atom is initially excited to the topmost level and the field is in a coherent state. Some physical properties of the atom-field entangled state such as linear entropy showing the entanglement degree, Mandel parameter, mean photon number and normal squeezing of the resultant state have been calculated. The effects of Kerr medium, detuning and the intensity-dependent coupling on the temporal behavior of the latter mentioned nonclassical properties have been investigated. It is shown that by appropriately choosing the evolved parameters in the interaction process, each of the above nonclassicality features, which are of special interest in quantum optics as well as quantum information processing, can be revealed.
To be appeared in Commun. Theor. Phys
References in corpus (9)
- The Construction of Some Important Classes of Generalized Coherent states: The Nonlinear Coherent States Method
- Tripartite entanglement dynamics and entropic squeezing of a three-level atom interacting with a bimodal cavity field
- Entanglement, quantum statistics and squeezing of two -type three-level atoms interacting nonlinearly with a single-mode field
- Dynamics of entanglement of a three-level atom in motion interacting with two coupled modes including parametric down conversion
- Entropy squeezing and atomic inversion in the -photon Jaynes-Cummings model in the presence of Stark shift and Kerr medium: full nonlinear approach
- Quantum entanglement and position-momentum entropic squeezing of a moving Lambda-type three-level atom interacting with a single-mode quantized field with intensity-dependent coupling
- Number-phase entropic squeezing and nonclassical properties of a three-level atom interacting with a two-mode field: Intensity-dependent coupling, deformed Kerr medium and detuning effects
- Exact results on decoherence and entanglement in a system of N driven atoms and a dissipative cavity mode
- Relationship between the atomic inversion and Wigner function for multiphoton multimode Jaynes-Cummings model
Cited by in corpus (6)
- Entanglement analysis of two-atom nonlinear JCM with nondegenerate two-photon transition, Kerr nonlinearity and two-mode Stark shift
- Entanglement criteria of two two-level atoms interacting with two coupled modes
- Creating a switchable optical cavity with controllable quantum-state mapping between two modes
- Quantum repeater using three-level atomic states in the presence of dissipation: stability of entanglement
- Algebraic and group treatments to nonlinear displaced number states and their nonclassicality features
- Generation and nonclassicality of entangled states via the interaction of two three-level atoms with a quantized cavity field assisted by a driving external classical field