arXiv · 1001.4182
Optimizing type-I polarization-entangled photons
Abstract
Optical quantum information processing needs ultra-bright sources of entangled photons, especially from synchronizable femtosecond lasers and low-cost cw-diode lasers. Decoherence due to timing information and spatial mode-dependent phase has traditionally limited the brightness of such sources. We report on a variety of methods to optimize type-I polarization-entangled sources - the combined use of different compensation techniques to engineer high-fidelity pulsed and cw-diode laser-pumped sources, as well as the first production of polarization-entanglement directly from the highly nonlinear biaxial crystal BiB3O6 (BiBO). Using spatial compensation, we show more than a 400-fold improvement in the phase flatness, which otherwise limits efficient collection of entangled photons from BiBO, and report the highest fidelity to date (99%) of any ultrafast polarization-entanglement source. Our numerical code, available on our website, can design optimal compensation crystals and simulate entanglement from a variety of type-I phasematched nonlinear crystals.
Explore related subjects
Keep this discovery
Radhika Rangarajan, Michael Goggin, Paul Kwiat. 2010-01-23. Optimizing type-I polarization-entangled photons. https://doi.org/10.1364/oe.17.018920
Cite the original work for its findings. Save a collection to share your selection of sources.