Secret sharing of a known arbitrary quantum state with noisy environment

Secret sharing of a known arbitrary quantum state with noisy environment We study quantum state sharing (QSTS) with noisy environment in this paper. As an example, we present a QSTS scheme of a known state whose information is hold by the dealer and then investigate the noisy influence process of the scheme. Taking the amplitude-damping noise and the phase-damping noise as typical noisy channels, we show that the secret state can be shared among agents with some information lost. Our research connects the areas of quantum state sharing and remote state preparation. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Quantum Information Processing Springer Journals

Secret sharing of a known arbitrary quantum state with noisy environment

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Publisher
Springer US
Copyright
Copyright © 2015 by Springer Science+Business Media New York
Subject
Physics; Quantum Information Technology, Spintronics; Quantum Computing; Data Structures, Cryptology and Information Theory; Quantum Physics; Mathematical Physics
ISSN
1570-0755
eISSN
1573-1332
D.O.I.
10.1007/s11128-015-1103-0
Publisher site
See Article on Publisher Site

Abstract

We study quantum state sharing (QSTS) with noisy environment in this paper. As an example, we present a QSTS scheme of a known state whose information is hold by the dealer and then investigate the noisy influence process of the scheme. Taking the amplitude-damping noise and the phase-damping noise as typical noisy channels, we show that the secret state can be shared among agents with some information lost. Our research connects the areas of quantum state sharing and remote state preparation.

Journal

Quantum Information ProcessingSpringer Journals

Published: Aug 29, 2015

References

  • Multi-party quantum state sharing of an arbitrary two-qubit state with Bell states
    Shi, RH; Huang, LS; Yang, W; Zhong, H
  • Deterministic joint remote preparation of arbitrary multi-qudit states
    Jiang, M; Jiang, F
  • Improving the security of multiparty quantum secret sharing against an attack with a fake signal
    Qin, SJ; Gao, F; Wen, QY; Zhu, FC
  • Controlled teleportation of an arbitrary n-qubit quantum information using quantum secret sharing of classical message
    Zhang, ZJ
  • Joint remote preparation of an arbitrary three-qubit state
    Luo, MX; Chen, XB; Ma, SY; Niu, XX; Yang, YX
  • Controlled remote state preparation of arbitrary two and three qubit states via the Brown state
    Chen, XB; Ma, SY; Su, Y; Zhang, R; Yang, YX

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