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Discrete coherent and squeezed states of many-qudit systems

Source: Phys. Rev. A 80, 043836 (2009); doi:10.1103/PhysRevA.80.043836

Published 27 October 2009

KEYWORDS and PACS
Keywords
PACS
  • 42.50.Dv
    Quantum state engineering and measurements (quantum optics)
  • 03.65.Ta
    Foundations of quantum mechanics; measurement theory
  • 03.65.Fd
    Algebraic methods in quantum mechanics
  • YEAR: 2009
PUBLICATION DATA
Publisher:
AIP is a member of CrossRef APS
Andrei B. Klimov,1 Carlos Muñoz,1 and Luis L. Sánchez-Soto2
1Departamento de Física, Universidad de Guadalajara, 44420 Guadalajara, Jalisco, Mexico
2Departamento de Óptica, Facultad de Física, Universidad Complutense, 28040 Madrid, Spain

We consider the phase space for n identical qudits (each one of dimension d, with d a primer number) as a grid of dn×dn points and use the finite Galois field GF(dn) to label the corresponding axes. The associated displacement operators permit to define s-parametrized quasidistributions on this grid, with properties analogous to their continuous counterparts. These displacements allow also for the construction of finite coherent states, once a fiducial state is fixed. We take this reference as one eigenstate of the discrete Fourier transform and study the factorization properties of the resulting coherent states. We extend these ideas to include discrete squeezed states, and show their intriguing relation with entangled states of different qudits. ©2009 The American Physical Society
History: Received 3 August 2009; published 27 October 2009
Permalink: http://link.aps.org/abstract/PRA/v80/e043836
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