Quantum controlled-phase-flip gate between a flying optical photon and a Rydberg atomic ensemble

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作者
Y. M. Hao
G. W. Lin
Keyu Xia
X. M. Lin
Y. P. Niu
S. Q. Gong
机构
[1] East China University of Science and Technology,Department of Physics
[2] ARC Centre for Engineered Quantum Systems,Department of Physics and Astronomy
[3] Macquarie University,undefined
[4] College of Physics and Energy,undefined
[5] Fujian Normal University,undefined
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Quantum controlled-phase-flip (CPF) gate between a flying photon qubit and a stationary atomic qubit could allow the linking of distant computational nodes in a quantum network. Here we present a scheme to realize quantum CPF gate between a flying optical photon and an atomic ensemble based on cavity input-output process and Rydberg blockade. When a flying single-photon pulse is reflected off the cavity containing a Rydberg atomic ensemble, the dark resonance and Rydberg blockade induce a conditional phase shift [inline-graphic not available: see fulltext] for the photon pulse, thus we can achieve the CPF gate between the photon and the atomic ensemble. Assisted by Rydberg blockade interaction, our scheme works in the N-atoms strong-coupling regime and significantly relaxes the requirement of strong coupling of single atom to photon in the optical cavity.
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