Quantum And Classical Correlation of Two Atoms

Esraa Reda Abdel-Hady Mohamed Elziaty;

Abstract


In this thesis, we introduce the standard Tavis-Cummings model to describe two-qubit system interacting with a single-mode field associated to power-law (PL) potentials. We explore the effect of the time-dependent interaction and the Kerr-like medium.
We solve the Schrödinger equation to obtain the density operator that allows us to investigate the dynamical behaviour of some quantumness measures, such as von Neumann entropy, negativity and Mandel’s parameter.
We provide how these entanglement measures depend on the system parameters, which paves the way towards better control of entanglement generation in two qubit systems. We find that the enhancement and preservation of the atoms field entanglement and atom-atom entanglement can be achieved by a proper choice of the initial parameters of the field in the absence and presence of the time-dependent interaction and Kerr medium. We examine the photons distribution of the field and determine the situations for which the field exhibits super-Poissonian, Poissonian or sub-Poissonian distribution.
Also, we examine a nonlinear version of the Tavis–Cummings model for two two-level atoms interacting with a single-mode field within a cavity in the context of power-law potentials. We consider the effect of the particle position that depends on the velocity and acceleration, and the coupling parameter is supposed to be time-dependent. We examine the effect of velocity and


Other data

Title Quantum And Classical Correlation of Two Atoms
Other Titles الارتباط الكمي والكلاسيكي لذرتين
Authors Esraa Reda Abdel-Hady Mohamed Elziaty
Issue Date 2022

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