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A two-level atom coupled to a two-dimensional supersymmetric and shape-invariant system: dynamics and entanglement

A N F Aleixo1 and A B Balantekin2

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A class of bound-state problems which represent the coupling of a two-level atom with a two-dimensional supersymmetric system involving two shape-invariant potentials was introduced in a previous paper. We study in this second paper the quantum dynamics and the entanglement for two models with different coupling Hamiltonians.


PACS

03.65.Fd Algebraic methods

03.67.Mn Entanglement measures, witnesses, and other characterizations

03.65.Ud Entanglement and quantum nonlocality (e.g. EPR paradox, Bell's inequalities, GHZ states, etc.)

03.65.Ge Solutions of wave equations: bound states

MSC

81R15 Operator algebra methods (See also 46Lxx, 81T05)

81Q60 Supersymmetric quantum mechanics

81Q05 Closed and approximate solutions to the Schrödinger, Dirac, Klein-Gordon and other quantum-mechanical equations

Subjects

Computational physics

Quantum information and quantum mechanics

Dates

Issue 14 (6 April 2007)

Received 4 December 2006, in final form 5 February 2007

Published 20 March 2007



  1. A two-level atom coupled to a two-dimensional supersymmetric and shape-invariant system: dynamics and entanglement

    A N F Aleixo and A B Balantekin 2007 J. Phys. A: Math. Theor. 40 3933

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