Spectral properties of photon pairs generated by spontaneous four wave mixing in inhomogeneous photonic crystal fibers
arXiv:1202.0376 · doi:10.1103/PhysRevA.85.023825
Abstract
The photonic crystal fiber (PCF) is one of the excellent media for generating photon pairs via spontaneous four wave mixing. Here we study how the inhomogeneity of PCFs affect the spectral properties of photon pairs from both the theoretical and experimental aspects. The theoretical model shows that the photon pairs born in different place of the inhomogeneous PCF are coherently superposed, and a modulation in the broadened spectrum of phase matching function will appear, which prevents the realization of spectral factorable photon pairs. In particular, the inhomogeneity induced modulation can be examined by measuring the spectrum of individual signal or idler field when the asymmetric group velocity matching is approximately fulfilled. Our experiments are performed by tailoring the spectrum of pulsed pump to satisfy the specified phase matching condition. The observed spectra of individual signal photons, which are produced from different segments of the 1.9 m inhomogeneous PCF, agree with the theoretical predictions. The investigations are not only useful for fiber based quantum state engineering, but also provide a dependable method to test the homogeneity of PCF.
to appear in Phys. Rev. A
References in corpus (7)
- Probing multimode squeezing with correlation functions
- Photon pair-state preparation with tailored spectral properties by spontaneous four-wave mixing in photonic-crystal fiber
- Tailored photon-pair generation in optical fibers
- Photon pair generation using four-wave mixing in a microstructured fibre: theory versus experiment
- Nonclassical 2-photon interference with separate intrinsically narrowband fibre sources
- Bridging Visible and Telecom Wavelengths with a Single-Mode Broadband Photon Pair Source
- Effect of chromatic dispersion induced chirp on the temporal coherence property of individual beam from spontaneous four wave mixing
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