Abstract

We propose a new kind of Schrödinger cat state introduced as a superposition of spin coherent states in the framework of noncommutative spaces. We analyze the nonclassical features for these noncommutative deformed states in terms of the main physical parameters. The physical importance of deformed states is that they provide a convenient description of a large set of laser systems. As an application, we develop the Jaynes–Cummings model by considering the interaction among atoms and cat state fields associated to deformed spin algebras. In this context, we show the dynamical behavior of the nonlocal correlation and nonclassical properties in these quantum systems.

Highlights

  • In almost all the areas of physics, the theory of coherent states (CSs) has been used after Schrödinger first built quantum states which are the closest to replicate the classical behavior [1]

  • We have proposed a new kind of Schrödinger cat states introduced

  • We have studied the dynamical behavior of the parameters

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Summary

Introduction

In almost all the areas of physics, the theory of coherent states (CSs) has been used after Schrödinger first built quantum states which are the closest to replicate the classical behavior [1]. CSs is the spin coherent states (SCSs) connect with su(2) group These CSs explain various systems and have several usages in statistical mechanics, quantum optics, and physics of condensed matter [6,7,8,11,12,13]. The essential question for the quantum entanglement is to analyze if a particular state of the whole system, comprising of more than one subsystem, is entangled or not and it is factorizable if it can be given as a product of the subsystem states The aim of this manuscript is to introduce a new kind of Schrödinger cat states using the suq (2) algebra. We investigate the nonclassical properties of these DCSs with respect to the main physical parameters, and we consider the JCM to describe the interaction among two-level atoms and cat state fields associated to suq (2) algebra. The conclusion of this paper is given in the last section

Deformed Spin Algebra
Deformed Schrödinger Cat Spin Coherent States
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