Paper
6 September 2011 Quantum memory for a photonic polarization qubit using hot atomic vapor
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Abstract
We report an experimental realization of an atomic vapor quantum memory for the photonic polarization qubit. The performance of the quantum memory for the polarization qubit, realized with electromagnetically-induced transparency in two spatially separated ensembles of warm Rubidium atoms in a single vapor cell, has been characterized with quantum process tomography. The process fidelity better than 0.91 for up to 16 μs of storage time has been achieved.
© (2011) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Young-Wook Cho and Yoon-Ho Kim "Quantum memory for a photonic polarization qubit using hot atomic vapor", Proc. SPIE 8163, Quantum Communications and Quantum Imaging IX, 816315 (6 September 2011); https://doi.org/10.1117/12.903887
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KEYWORDS
Polarization

Quantum communications

Photon polarization

Quantum memory

Quantum process tomography

Photons

Quantum efficiency

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