Multiphoton-state-assisted entanglement purification of material qubits
arXiv:1512.09095 · doi:10.1103/PhysRevA.93.032317
Abstract
We propose an entanglement purification scheme based on material qubits and ancillary coherent multiphoton states. We consider a typical QED scenario where material qubits implemented by two-level atoms fly sequentially through a cavity and interact resonantly with a single mode of the radiation field. We explore the theoretical possibilities of realizing a high-fidelity two-qubit quantum operation necessary for the purification protocol with the help of a postselective balanced homodyne photodetection. We demonstrate that the obtained probabilistic quantum operation can be used as a bilateral operation in the proposed purification scheme. It is shown that the probabilistic nature of this quantum operation is counterbalanced in the last step of the scheme where qubits are not discarded after inadequate qubit measurements. As this protocol requires present-day experimental setups and generates high-fidelity entangled pairs with high repetition rates, it may offer interesting perspectives for applications in quantum information theory.
12 pages, 12 figures
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Cited by in corpus (11)
- Entanglement transfer in a noisy cavity network with parity-deformed radiation fields
- Atomic Bell measurement via two-photon interactions
- Conditions for entanglement purification with general two-qubit states
- Hybrid quantum repeater based on resonant qubit-field interactions
- Entangling operations in nonlinear two-atom Tavis-Cummings models
- Statistical evaluation and optimization of entanglement purification protocols
- Performance of entanglement purification including maximally entangled mixed states
- Optimal two-qubit gates in recurrence protocols of entanglement purification
- Strategies for entanglement distribution in optical fiber networks
- Perfect revivals of Rabi oscillations and hybrid Bell states in a trapped ion
- Sensitivity of Measurement-Based Purification Processes to Inner Interactions