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Efficient scheme for entangled states and quantum information transfer with trapped atoms in a resonator

Efficient scheme for entangled states and quantum information transfer with trapped atoms in a resonator
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摘要 A protocol is proposed to generate atomic entangled states and implement quantum information transfer in a cavity quantum electrodynamics system. It utilizes Raman transitions or stimulated Raman adiabatic passages between two systems to entangle the ground states of two three-state A-type atoms trapped in a single mode cavity. It does not need the measurements on cavity field nor atomic detection and can be implemented in a deterministic fashion. Since the present protocol is insensitive to both cavity decay and atomic spontaneous emission, it may have some interesting applications in quantum information processing. A protocol is proposed to generate atomic entangled states and implement quantum information transfer in a cavity quantum electrodynamics system. It utilizes Raman transitions or stimulated Raman adiabatic passages between two systems to entangle the ground states of two three-state A-type atoms trapped in a single mode cavity. It does not need the measurements on cavity field nor atomic detection and can be implemented in a deterministic fashion. Since the present protocol is insensitive to both cavity decay and atomic spontaneous emission, it may have some interesting applications in quantum information processing.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2011年第9期49-53,共5页 中国物理B(英文版)
基金 Project supported by the National Basic Research Program of China (Grant No.2010CB923102) the National Natural Science Foundation of China (Grant No.11074199)
关键词 cavity quantum electrodynamics entangled states quantum information transfer cavity quantum electrodynamics, entangled states, quantum information transfer
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