Schemes generating entangled states and entanglement swapping between photons and three-level atoms inside optical cavities for quantum communication
Abstract
We propose quantum information processing schemes based on cavity quantum electrodynamics (QED) for quantum communication. First, to generate entangled states (Bell and Greenberger-Horne-Zeilinger [GHZ] states) between flying photons and three-level atoms inside optical cavities, we utilize a controlled phase flip (CPF) gate that can be implemented via cavity QED). Subsequently, we present an entanglement swapping scheme that can be realized using single-qubit measurements and CPF gates via optical cavities. These schemes can be directly applied to construct an entanglement channel for a communication system between two users. Consequently, it is possible for the trust center, having quantum nodes, to accomplish the linked channel (entanglement channel) between the two separate long-distance users via the distribution of Bell states and entanglement swapping. Furthermore, in our schemes, the main physical component is the CPF gate between the photons and the three-level atoms in cavity QED, which is feasible in practice. Thus, our schemes can be experimentally realized with current technology.
- Publication:
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Quantum Information Processing
- Pub Date:
- January 2017
- DOI:
- 10.1007/s11128-016-1459-9
- Bibcode:
- 2017QuIP...16...24H
- Keywords:
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- Entangled state;
- Entanglement swapping;
- Quantum communication;
- Cavity QED