Efficient multipartite entanglement concentration of electron-spin state with charge detection
arXiv:1209.3545
Abstract
We present two entanglement concentration protocols (ECPs) for arbitrary three-electron W state based on their charges and spins. Different from other ECPs, in both two ECPs, with the help of the electronic polarization beam splitter (PBS) and charge detection, the less-entangled W state can be concentrated into a maximally entangled state only with some single charge qubits. The second ECP is more optimal than the first one, for by constructing the complete parity check gate, the second ECP can be used repeatedly to further concentrate the less-entangled state and obtain a higher success probability. Therefore, both the ECPs, especially the second one may be useful in current quantum information processing.
8 pages, 4 figures
References in corpus (6)
- Multiparty quantum state sharing of an arbitrary two-particle state with Einstein-Podolsky-Rosen pairs
- Giant optical Faraday rotation induced by a single electron spin in a quantum dot: Applications to entangling remote spins via a single photon
- Nonlocal entanglement concentration scheme for partially entangled multipartite systems with nonlinear optics
- Charge detection enables free-electron quantum computation
- Parity meter for charge qubits: an efficient quantum entangler
- Entangling spins by measuring charge: a parity-gate toolbox