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非线性集成光子器件导论:非线性效应与材料

An Introduction to Nonlinear Integrated Photonics Devices: Nonlinear Effects and Materials.

作者信息

Sirleto Luigi, Righini Giancarlo C

机构信息

National Research Council (CNR), Institute of Applied Sciences and Intelligent Systems (ISASI), Via Pietro Castellino 111, 80131 Napoli, Italy.

National Research Council (CNR), Institute of Applied Physics (IFAC) "Nello Carrara", Via Madonna del Piano 10, 50019 Sesto Fiorentino, Florence, Italy.

出版信息

Micromachines (Basel). 2023 Mar 6;14(3):604. doi: 10.3390/mi14030604.

Abstract

The combination of integrated optics technologies with nonlinear photonics, which has led to the growth of nonlinear integrated photonics, has also opened the way to groundbreaking new devices and applications. Here we introduce the main physical processes involved in nonlinear photonics applications, and we discuss the fundaments of this research area, starting from traditional second-order and third-order phenomena and going to ultrafast phenomena. The applications, on the other hand, have been made possible by the availability of suitable materials, with high nonlinear coefficients, and/or by the design of guided-wave structures, which can enhance the material's nonlinear properties. A summary of the most common nonlinear materials is presented, together with a discussion of the innovative ones. The discussion of fabrication processes and integration platforms is the subject of a companion article, also submitted for publication in this journal. There, several examples of nonlinear photonic integrated devices to be employed in optical communications, all-optical signal processing and computing, or quantum optics are shown, too. We aimed at offering a broad overview, even if, certainly, not exhaustive. We hope that the overall work could provide guidance for those who are newcomers to this field and some hints to the interested researchers for a more detailed investigation of the present and future development of this hot and rapidly growing field.

摘要

集成光学技术与非线性光子学的结合催生了非线性集成光子学的发展,同时也为开创性的新器件和应用开辟了道路。在此,我们介绍非线性光子学应用中涉及的主要物理过程,并从传统的二阶和三阶现象入手,直至超快现象,探讨这一研究领域的基础。另一方面,合适材料(具有高非线性系数)的可得性,和/或能增强材料非线性特性的光波导结构的设计,使得这些应用成为可能。本文给出了最常见的非线性材料的总结,并对新型材料进行了讨论。制造工艺和集成平台的讨论是另一篇配套文章的主题,该文章也已提交至本期刊发表。在那篇文章中,还展示了一些用于光通信、全光信号处理与计算或量子光学的非线性光子集成器件的实例。我们旨在提供一个广泛的概述,即便肯定不够详尽。我们希望这项整体工作能为该领域的新手提供指导,并为感兴趣的研究人员提供一些线索,以便他们更详细地研究这个热门且快速发展领域的当前和未来发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6684/10058895/0822dba42764/micromachines-14-00604-g001.jpg

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