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Dispersion-engineered χ(2) nanophotonics: a flexible tool for nonclassical light

2021/03/03 by Marc Jankowski, Jankowski, Marc, Jatadhari Mishra +3 · 5 citations
Engineering · Physics and Astronomy · #FOS: Physical sciences #Optics (physics.optics) #Photonic Crystals and Applications #Photonic and Optical Devices #Quantum Physics (quant-ph) #Semiconductor Lasers and Optical Devices

paper · pdf · doi:10.48550/arxiv.2103.02296

openalex publication_date 2021/03/03 · openalex created_date 2024/04/11 · openalex updated_date 2026/07/28

Abstract

This article reviews recent progress in quasi-phasematched χ(2) nonlinear nanophotonics, with a particular focus on dispersion-engineered nonlinear interactions. Throughout this article, we establish design rules for the bandwidth and interaction lengths of various nonlinear processes, and provide examples for how these processes can be engineered in nanophotonic devices. In particular, we apply these rules towards the design of sources of non-classical light and show that dispersion-engineered devices can outperform their conventional counterparts. Examples include ultra-broadband optical parametric amplification as a resource for measurement-based quantum computation, dispersion-engineered spontaneous parametric downconversion as a source of separable biphotons, and synchronously pumped nonlinear resonators as a potential route towards single-photon nonlinearities.

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