4.8 Article

High-Capacity Angularly Multiplexed Holographic Memory Operating at the Single-Photon Level

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PHYSICAL REVIEW LETTERS
卷 118, 期 6, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.118.063603

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  1. National Science Center (Poland) [DEC-2011/03/D/ST2/01941, DEC-2015/19/N/ST2/01671]
  2. PhoQuS@UW [316244]
  3. PL-Grid Infrastructure
  4. Foundation for Polish Science

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We experimentally demonstrate an angularly multiplexed holographic memory capable of intrinsic generation, storage, and retrieval of multiple photons, based on an off-resonant Raman interaction in warm rubidium-87 vapors. The memory capacity of up to 60 independent atomic spin-wave modes is evidenced by analyzing angular distributions of coincidences between Stokes and time-delayed anti-Stokes light, observed down to the level of single spin-wave excitation during the several-microsecond memory lifetime. We also propose how to practically enhance rates of single-and multiple-photon generation by combining our multimode emissive memory with existing fast optical switches.

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