Photon pair-state preparation with tailored spectral properties by spontaneous four-wave mixing in photonic-crystal fiber

We study theoretically the generation of photon pairs by spontaneous four-wave mixing (SFWM) in photonic crystal optical fiber. We show that it is possible to engineer two-photon states with specific spectral correlation ("entanglement") properties suitable for quantum information processi...

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Veröffentlicht in:Optics express 2007-10, Vol.15 (22), p.14870-14886
Hauptverfasser: Garay-Palmett, K, McGuinness, H J, Cohen, Offir, Lundeen, J S, Rangel-Rojo, R, U'ren, A B, Raymer, M G, McKinstrie, C J, Radic, S, Walmsley, I A
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Sprache:eng
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Zusammenfassung:We study theoretically the generation of photon pairs by spontaneous four-wave mixing (SFWM) in photonic crystal optical fiber. We show that it is possible to engineer two-photon states with specific spectral correlation ("entanglement") properties suitable for quantum information processing applications. We focus on the case exhibiting no spectral correlations in the two-photon component of the state, which we call factorability, and which allows heralding of single-photon pure-state wave packets without the need for spectral post filtering. We show that spontaneous four wave mixing exhibits a remarkable flexibility, permitting a wider class of two-photon states, including ultra-broadband, highly-anticorrelated states.
ISSN:1094-4087
1094-4087
DOI:10.1364/OE.15.014870