Quantum storage of optical signals and coherent manipulation of quantum states based on electromagnetically induced transparency

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Abstract

Electromagnetically induced transparency (EIT) techniques are important tools for the storage of the quantum states of light fields in atomic ensembles and for enhancement of the interaction between photons. In this paper, we briefly summarize the recent experimental studies conducted by our group on enhanced cross-phase modulation based on double EIT effects, the quantum interference of stored dual-channel spin-wave excitations and the coherent manipulation of the spin wave vector for the polarization of photons in a single tripod atomic system. The work presented here has potential application in the developing field of quantum information processing. © 2012 The Author(s).

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Wang, H., Xie, C. D., & Peng, K. C. (2012, June). Quantum storage of optical signals and coherent manipulation of quantum states based on electromagnetically induced transparency. Chinese Science Bulletin. https://doi.org/10.1007/s11434-012-5090-6

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