arXiv · 1507.05558
Integrated AlGaAs source of highly indistinguishable and energy-time entangled photons
Abstract
The generation of nonclassical states of light in miniature chips is a crucial step towards practical implementations of future quantum technologies. Semiconductor materials are ideal to achieve extremely compact and massively parallel systems and several platforms are currently under development. In this context, spontaneous parametric down conversion in AlGaAs devices combines the advantages of room temperature operation, possibility of electrical injection and emission in the telecom band. Here we report on a chip-based AlGaAs source, producing indistinguishable and energy-time entangled photons with a brightness of $7.2\times10^6$ pairs/s and a signal-to-noise ratio of $141\pm12$. Indistinguishability between the photons is demonstrated via a Hong-Ou-Mandel experiment with a visibility of $89\pm3\%$, while energy-time entanglement is tested via a Franson interferometer leading to a value for the Bell parameter $ S=2.70\pm0.10$.
Explore related subjects
Keep this discovery
Claire Autebert, Natalia Bruno, Anthony Martin, Aristide Lemaître, Carmen Gomez Carbonell, Ivan Favero, Giuseppe Leo, Hugo Zbinden, Sara Ducci. 2015-07-20. Integrated AlGaAs source of highly indistinguishable and energy-time entangled photons. https://arxiv.org/abs/1507.05558
Cite the original work for its findings. Save a collection to share your selection of sources.