Entanglement purification and concentration of electron-spin entangled states using quantum-dot spins in optical microcavities
Abstract
We present an entanglement purification protocol and an entanglement concentration protocol for electron-spin entangled states, resorting to quantum-dot spin and optical-microcavity-coupled systems. The parity-check gates (PCGs) constructed by the cavity-spin-coupling system provide a different method for the entanglement purification of electron-spin entangled states. This protocol can efficiently purify an electron ensemble in a mixed entangled state. The PCGs can also concentrate electron-spin pairs in less-entangled pure states efficiently. The proposed methods are more flexible as only single-photon detection and single-electron detection are needed.
- Publication:
-
Physical Review A
- Pub Date:
- September 2011
- DOI:
- Bibcode:
- 2011PhRvA..84c2307W
- Keywords:
-
- 03.67.Bg;
- 42.50.Pq;
- 78.67.Hc;
- 78.20.Ek;
- Entanglement production and manipulation;
- Cavity quantum electrodynamics;
- micromasers;
- Quantum dots;
- Optical activity