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arxiv:2402.19317

Simulation of integrated nonlinear quantum optics: from nonlinear interferometer to temporal walk-off compensator

Published on Feb 29, 2024
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Abstract

A nonlinear quantum photonics simulation framework models various features of integrated photonics, enabling a chip-scale temporal walk-off compensation device that enhances photon-pair sources and quantum frequency converters.

AI-generated summary

Nonlinear quantum photonics serves as a cornerstone in photonic quantum technologies, such as universal quantum computing and quantum communications. The emergence of integrated photonics platform not only offers the advantage of large-scale manufacturing but also provides a variety of engineering methods. Given the complexity of integrated photonics engineering, a comprehensive simulation framework is essential to fully harness the potential of the platform. In this context, we introduce a nonlinear quantum photonics simulation framework which can accurately model a variety of features such as adiabatic waveguide, material anisotropy, linear optics components, photon losses, and detectors. Furthermore, utilizing the framework, we have developed a device scheme, chip-scale temporal walk-off compensation, that is useful for various quantum information processing tasks. Applying the simulation framework, we show that the proposed device scheme can enhance the squeezing parameter of photon-pair sources and the conversion efficiency of quantum frequency converters without relying on higher pump power.

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