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铝镓砷非线性集成光子学

AlGaAs Nonlinear Integrated Photonics.

作者信息

Mobini Ehsan, Espinosa Daniel H G, Vyas Kaustubh, Dolgaleva Ksenia

机构信息

Department of Physics, University of Ottawa, Ottawa, ON K1N 6N5, Canada.

School of Electrical Engineering and Computer Science, University of Ottawa, Ottawa, ON K1N 6N5, Canada.

出版信息

Micromachines (Basel). 2022 Jun 24;13(7):991. doi: 10.3390/mi13070991.

Abstract

Practical applications implementing integrated photonic circuits can benefit from nonlinear optical functionalities such as wavelength conversion, all-optical signal processing, and frequency-comb generation, among others. Numerous nonlinear waveguide platforms have been explored for these roles; the group of materials capable of combining both passive and active functionalities monolithically on the same chip is III-V semiconductors. AlGaAs is the most studied III-V nonlinear waveguide platform to date; it exhibits both second- and third-order optical nonlinearity and can be used for a wide range of integrated nonlinear photonic devices. In this review, we conduct an extensive overview of various AlGaAs nonlinear waveguide platforms and geometries, their nonlinear optical performances, as well as the measured values and wavelength dependencies of their effective nonlinear coefficients. Furthermore, we highlight the state-of-the-art achievements in the field, among which are efficient tunable wavelength converters, on-chip frequency-comb generation, and ultra-broadband on-chip supercontinuum generation. Moreover, we overview the applications in development where AlGaAs nonlinear functional devices aspire to be the game-changers. Among such applications, there is all-optical signal processing in optical communication networks and integrated quantum photonic circuits.

摘要

实现集成光子电路的实际应用可以受益于诸如波长转换、全光信号处理和频率梳产生等非线性光学功能。已经探索了许多非线性波导平台来实现这些功能;能够在同一芯片上单片集成无源和有源功能的材料组是III-V族半导体。AlGaAs是迄今为止研究最多的III-V族非线性波导平台;它具有二阶和三阶光学非线性,可用于广泛的集成非线性光子器件。在本综述中,我们对各种AlGaAs非线性波导平台和几何结构、它们的非线性光学性能以及它们有效非线性系数的测量值和波长依赖性进行了广泛概述。此外,我们突出了该领域的最新成就,其中包括高效可调谐波长转换器、片上频率梳产生和超宽带片上超连续谱产生。此外,我们概述了AlGaAs非线性功能器件有望成为变革者的正在开发中的应用。在这些应用中,有光通信网络中的全光信号处理和集成量子光子电路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80ba/9323658/1aa826611ccf/micromachines-13-00991-g001.jpg

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