| Literature DB >> 20721006 |
C Xiong1, L G Helt, A C Judge, G D Marshall, M J Steel, J E Sipe, B J Eggleton.
Abstract
We theoretically investigate the generation of quantum-correlated photon pairs through spontaneous four-wave mixing in chalcogenide As(2)S(3) waveguides. For reasonable pump power levels, we show that such photonic-chip-based photon-pair sources can exhibit high brightness (approximately 1 x 10(9) pairs/s) and high correlation (approximately 100) if the waveguide length is chosen properly or the waveguide dispersion is engineered. Such a high correlation is possible in the presence of Raman scattering because the Raman profile exhibits a low gain window at a Stokes shift of 7.4 THz, though it is constrained due to multi-pair generation. As the proposed scheme is based on photonic chip technologies, it has the potential to become an integrated platform for the implementation of on-chip quantum technologies.Year: 2010 PMID: 20721006 DOI: 10.1364/OE.18.016206
Source DB: PubMed Journal: Opt Express ISSN: 1094-4087 Impact factor: 3.894