Mirrorless Optical Parametric Oscillation with Tunable Threshold in Cold Atoms

We report the demonstration of a mirrorless optical parametric oscillator with a tunable threshold in laser-cooled atoms with four-wave mixing (FWM) using electromagnetically induced transparency. Driven by two classical laser beams, the generated Stokes and anti-Stokes fields counterpropagate and b...

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Veröffentlicht in:Physical review letters 2017-10, Vol.119 (15), p.150406-150406, Article 150406
Hauptverfasser: Mei, Yefeng, Guo, Xianxin, Zhao, Luwei, Du, Shengwang
Format: Artikel
Sprache:eng
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Zusammenfassung:We report the demonstration of a mirrorless optical parametric oscillator with a tunable threshold in laser-cooled atoms with four-wave mixing (FWM) using electromagnetically induced transparency. Driven by two classical laser beams, the generated Stokes and anti-Stokes fields counterpropagate and build up efficient intrinsic feedback through the nonlinear FWM process. This feedback does not involve any cavity or spatially distributed microstructures. We observe the transition of photon correlation properties from the biphoton quantum regime (below the threshold) to the oscillation regime (above the threshold). The pump threshold can be tuned by varying the operating parameters. We achieve the oscillation with a threshold as low as 15  μW.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.119.150406