EIT-Based Quantum Memory for Single Photons from Cavity-QED
arXiv:1011.4755 · doi:10.1007/s00340-011-4523-2
Abstract
We investigate the feasibility of implementing an elementary building block for quantum information processing. The combination of a deterministic single photon source based on vacuum stimulated adiabatic rapid passage, and a quantum memory based on electromagnetically induced transparency in atomic vapour is outlined. Both systems are able to produce and process temporally shaped wavepackets which provides a way to maintain the indistinguishability of retrieved and original photons. We also propose an efficient and robust `repeat-until-success' quantum computation scheme based on this hybrid architecture.
10 pages, 7 figures
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Cited by in corpus (7)
- Highly Efficient Source for Indistinguishable Photons of Controlled Shape
- Quantum phase gate Based on Electromagnetically Induced Transparency in Optical Cavities
- Electromagnetic control of nonclassicality in cavity QED system
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