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Main Authors: Batin, Abdul Q., Ghosh, Suranjana, Roy, Utpal, Vitali, David
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2403.04300
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author Batin, Abdul Q.
Ghosh, Suranjana
Roy, Utpal
Vitali, David
author_facet Batin, Abdul Q.
Ghosh, Suranjana
Roy, Utpal
Vitali, David
contents We provide a scheme by utilizing a two-cavity setup to generate useful quantum mechanically entangled states of two cavity fields, which themselves are prepared in Schrodinger cat states. The underlying atom-field interaction is considered off-resonant and three atoms are successively sent through the cavities, initially fed with coherent fields. Analytical solution of the protocol, followed by conditional measurements on the atoms, produce a family of eight such entangled states. Entanglement properties of the obtained states are characterized by the Von Neumann entropy. We reveal the parameter domain for tuning the entanglement, the prime tuning parameters being the atom-field interaction time and the field amplitudes. The parameter domains for both quasi-Bell and non quasi-Bell states are discussed. We also present a Wigner phase space representation of the reduced state of the cavity, showing negative values and interference patterns similar to those of a compass state, used in quantum precision measurements, and despite its large entropy.
format Preprint
id arxiv_https___arxiv_org_abs_2403_04300
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Engineering Entangled Schrodinger Cat States of Separated Cavity Modes in Cavity-QED
Batin, Abdul Q.
Ghosh, Suranjana
Roy, Utpal
Vitali, David
Quantum Physics
We provide a scheme by utilizing a two-cavity setup to generate useful quantum mechanically entangled states of two cavity fields, which themselves are prepared in Schrodinger cat states. The underlying atom-field interaction is considered off-resonant and three atoms are successively sent through the cavities, initially fed with coherent fields. Analytical solution of the protocol, followed by conditional measurements on the atoms, produce a family of eight such entangled states. Entanglement properties of the obtained states are characterized by the Von Neumann entropy. We reveal the parameter domain for tuning the entanglement, the prime tuning parameters being the atom-field interaction time and the field amplitudes. The parameter domains for both quasi-Bell and non quasi-Bell states are discussed. We also present a Wigner phase space representation of the reduced state of the cavity, showing negative values and interference patterns similar to those of a compass state, used in quantum precision measurements, and despite its large entropy.
title Engineering Entangled Schrodinger Cat States of Separated Cavity Modes in Cavity-QED
topic Quantum Physics
url https://arxiv.org/abs/2403.04300