English

Deterministic transfer of multiqubit GHZ entangled states and quantum secret sharing between different cavities

Quantum Physics 2017-02-06 v1

Abstract

We propose a way for transferring Greenberger-Horne-Zeilinger (GHZ) entangled states from nn qubits in one cavity onto another nn qubits in the other cavity. It is shown that nn-qubit GHZ states α00...0+β11...1\alpha \left\vert 00...0\right\rangle +\beta \left\vert 11...1\right\rangle with arbitrary degree of entanglement can be transferred deterministically. Both of the GHZ state transfer and the operation time are not dependent on the number of qubits, and there is no need of measurement. This proposal is quite general and can be applied to accomplish the same task for a wide range of physical qubits. Furthermore, note that the nn-qubit GHZ state α00...0+β11...1\alpha \left\vert 00...0\right\rangle +\beta \left\vert 11...1\right\rangle is a quantum-secret-sharing code for encoding a single-qubit arbitrary pure state α0+β1\alpha \left\vert 0\right\rangle +\beta \left\vert 1\right\rangle . Thus, this work also provides a way to transfer quantum secret sharing from nn qubits in one cavity to another nn qubits in the other cavity.

Keywords

Cite

@article{arxiv.1702.00895,
  title  = {Deterministic transfer of multiqubit GHZ entangled states and quantum secret sharing between different cavities},
  author = {Xiao-Ling He and Chui-Ping Yang},
  journal= {arXiv preprint arXiv:1702.00895},
  year   = {2017}
}

Comments

10 pages, 3 figures