Entanglement Manipulation and Concentration
arXiv:quant-ph/0012049 · doi:10.1103/PhysRevA.63.030302
Abstract
We introduce a simple, experimentally realisable, entanglement manipulation protocol for exploring mixed state entanglement. We show that for both non-maximally entangled pure, and mixed polarisation-entangled two qubit states, an increase in the degree of entanglement and purity, which we define as concentration, is achievable.
Accepted as Rapid Communication PRA
Cited by in corpus (20)
- Maximally entangled mixed states: Creation and concentration
- Exploring Hilbert Space: accurate characterisation of quantum information
- Experimental Entanglement Concentration and Universal Bell-state Synthesizer
- Measurement-induced Nonlinearity in Linear Optics
- Experimental Entanglement Distillation of Two-qubit Mixed States Under Local filtering Operations
- Entanglement Concentration Using Quantum Statistics
- Tuning quantum channels to maximize polarization entanglement for telecom photon pairs
- Entanglement purification for arbitrary unknown ionic states via linear optics
- Biased EPR entanglement and its application to teleportation
- Mixed State Entanglement: Manipulating Polarisation-Entangled Photons
- Maximally Entangled Mixed-State Generation via Local Operations
- Improving the Fidelity of Optical Zeno Gates via Distillation
- Non-Abelian Phases from a Quantum Zeno Dynamics
- Exploring classical correlations in noise to recover quantum information using local filtering
- Optical Zeno Gate: Bounds for Fault Tolerant Operation
- Procrustean entanglement concentration in quantum-classical networking
- Exploring quantum properties of bipartite mixed states under coherent and incoherent basis
- Entanglement distillation using particle statistics
- Systematics of Entanglement Distribution by Separable States
- Generation and Manipulation of Entanglement in Quantum Optical Systems