English

Obtain $W$-state from three-qubit $GHZ$-state on rate 1

Quantum Physics 2014-04-22 v2

Abstract

In this paper, we study the entanglement transformation rate between multipartite states under stochastic local operations and classical communication (SLOCC). Firstly, we show that the entanglement transformation rate from GHZ=12(000+111)\ket{GHZ}=\tfrac{1}{\sqrt{2}}(\ket{000}+\ket{111}) to W=13(100+010+001)\ket{W}=\tfrac{1}{\sqrt{3}}(\ket{100}+\ket{010}+\ket{001}) is 1, that is, one can obtain 1 copy of WW-state, from 1 copy of GHZGHZ-state by SLOCC, asymptotically. We then generalize this result to a lower bound on the rate that from NN-partite GHZGHZ-state to Dicke states. For some special cases, the optimality of this bound is proved. We then discuss the tensor rank of matrix permanent by evaluating the the tensor rank of Dicke state.

Keywords

Cite

@article{arxiv.1309.4833,
  title  = {Obtain $W$-state from three-qubit $GHZ$-state on rate 1},
  author = {Nengkun Yu and Cheng Guo and Runyao Duan},
  journal= {arXiv preprint arXiv:1309.4833},
  year   = {2014}
}

Comments

6 Pages, comments welcome