JRSP of three-particle state via three tripartite GHZ class in quantum noisy channels
Abstract
We present a scheme for joint remote state preparation (JRSP) of three-particle state via three tripartite Greenberger-Horne-Zeilinger (GHZ) entangled states as the quantum channel linking the parties. We use eight-qubit mutually orthogonal basis vector as measurement point of departure. The likelihood of success for this scheme has been found to be . However, by putting some special cases into consideration, the chances can be ameliorated to and . The effects of amplitude-damping noise, phase-damping noise and depolarizing noise on this scheme have been scrutinized and the analytical derivations of fidelities for the quantum noisy channels have been presented. We found that for , the states conveyed through depolarizing channel lose more information than phase-damping channel while the information loss through amplitude damping channel is most minimal.
Keywords
Cite
@article{arxiv.1609.01538,
title = {JRSP of three-particle state via three tripartite GHZ class in quantum noisy channels},
author = {Babatunde James Falaye and Guo-Hua Sun and Oscar Camacho-Nieto and Shi-Hai Dong},
journal= {arXiv preprint arXiv:1609.01538},
year = {2016}
}