English

Entanglement dynamics of three-qubit states in noisy channels

Quantum Physics 2010-11-02 v2

Abstract

We study entanglement dynamics of the three-qubit system which is initially prepared in pure Greenberger-Horne- Zeilinger (GHZ) or W state and transmitted through one of the Pauli channels σz,σx,σy\sigma_z, \, \sigma_x, \, \sigma_y or the depolarizing channel. With the help of the lower bound for three-qubit concurrence we show that the W state preserves more entanglement than the GHZ state in transmission through the Pauli channel σz\sigma_z. For the Pauli channels σx,σy\sigma_x, \, \sigma_y and the depolarizing channel, however, the entanglement of the GHZ state is more resistant against decoherence than the W-type entanglement. We also briefly discuss how the accuracy of the lower bound approximation depends on the rank of the density matrix under consideration.

Keywords

Cite

@article{arxiv.1002.3064,
  title  = {Entanglement dynamics of three-qubit states in noisy channels},
  author = {Michael Siomau and Stephan Fritzsche},
  journal= {arXiv preprint arXiv:1002.3064},
  year   = {2010}
}

Comments

2 figures, 32 references