Schemes generating entangled states and entanglement swapping between photons and three-level atoms inside optical cavities for quantum communication

被引:0
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作者
Jino Heo
Min-Sung Kang
Chang-Ho Hong
Hyeon Yang
Seong-Gon Choi
机构
[1] Chungbuk National University,School of Information and Communication Engineering
[2] Korea Institute of Science and Technology (KIST),Center for Quantum Information
[3] National Security Research Institute,undefined
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Entangled state; Entanglement swapping; Quantum communication; Cavity QED;
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摘要
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.
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