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Single photon frequency conversion for frequency multiplexed quantum networks in the telecom band

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arxiv 2104.01881 v1 pith:5VLQ23AD submitted 2021-04-05 quant-ph physics.optics

Single photon frequency conversion for frequency multiplexed quantum networks in the telecom band

classification quant-ph physics.optics
keywords quantumfrequencychannelsconversionmemoriesmultiplexedprotocolspectrum
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

High-speed long-range quantum communication requires combining frequency multiplexed photonic channels with quantum memories. We experimentally demonstrate an integrated quantum frequency conversion protocol that can convert between wavelength division multiplexing channels in the telecom range with an efficiency of $55\pm 8\%$ and a noise subtracted HOM dip visibility of 84.5%. This protocol is based on a cascaded second order nonlinear interaction and can be used to interface a broad spectrum of frequencies with narrowband quantum memories, or alternatively as a quantum optical transponder, efficiently interfacing different regions of a frequency-multiplexed spectrum.

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