Title of article :
Dynamic of Two-Level System in the F-Deformed Jaynes-Cummings Model Beyond the Rotating-Wave Approximation
Author/Authors :
Daeimohammad, Mohsen Department of Physics - Najafabad Branch - Islamic Azad University, Najafabad, Iran
Abstract :
The aim of this study is to investigate an effective two-level atom coupled to a twomode f-deformed cavity field with and without the rotating wave approximation. The first section discusses the theoretical model of the interaction between a two-mode cavity-field and
an effective two-level atom within the framework of an f-DJCM without the rotating wave
approximation. After that, we obtain the
reduced density matrix of the atom with and
without the rotating-wave approximation. Then,
we have investigated the effect of the counterterm
on temporal evolution of various nonclassical
properties of the atom, i.e., atomic
population inversion, atomic dipole squeezing
and atom-field entanglement. Particularly, we compare the numerical result for three different
values of the deformation parameter q (q=1, q=1.1, q=1) with and without the rotating wave approximation.
Keywords :
F-Deformed Jaynes- Cummings Model , Rotating Wave Approximation , Counter-Rotating Terms , Virtual - Photon Processes
Journal title :
International Journal of Optics and Photonics (IJOP)