可编程集成光子学

J. Capmany, Daniel Pérez
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引用次数: 34

摘要

可编程集成光子学(PIP)是一种旨在设计通用集成光学硬件配置的新范式,通过适当的编程可以实现各种功能,这些功能反过来又可以作为许多应用领域的基本操作。可编程性通过外部控制信号使芯片重新配置多功能操作以及芯片稳定,以防止因环境条件波动和制造错误而导致的非理想操作。编程还允许激活芯片的某些部分,这些部分对于实现给定功能不是必需的,但可以通过转移不希望的反射来帮助降低噪声水平。在特定应用光子集成电路(ASPIC)范式在集成光学领域完全占据主导地位的几年之后,由于许多新兴应用的激增,人们对PIP的兴趣越来越大,这些应用正在并将要求真正的灵活性、可重构性以及低成本、紧凑和低功耗的设备。本书旨在全面介绍这一新兴领域,涵盖从技术和构建光子组件块的基本方面到复杂可编程光子电路的设计替代方案和原理,其限制因素,表征和性能监测/控制技术及其在经典和量子信息领域的突出应用。这本书主要集中在可编程光子学的独特功能,与更传统的ASPIC方法相比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Programmable integrated photonics
Programmable Integrated Photonics (PIP) is a new paradigm that aims at designing common integrated optical hardware configurations, which by suitable programming can implement a variety of functionalities that, in turn, can be exploited as basic operations in many application fields. Programmability enables by means of external control signals both chip reconfiguration for multifunction operation as well as chip stabilization against non-ideal operation due to fluctuations in environmental conditions and fabrication errors. Programming also allows activating parts of the chip, which are not essential for the implementation of a given functionality but can be of help in reducing noise levels through the diversion of undesired reflections. After some years where the Application Specific Photonic Integrated Circuit (ASPIC) paradigm has completely dominated the field of integrated optics, there is an increasing interest in PIP justified by the surge of a number of emerging applications that are and will be calling for true flexibility, reconfigurability as well as low-cost, compact and low-power consuming devices. This book aims to provide a comprehensive introduction to this emergent field covering aspects that range from the basic aspects of technologies and building photonic component blocks to the design alternatives and principles of complex programmable photonics circuits, their limiting factors, techniques for characterization and performance monitoring/control and their salient applications both in the classical as well as in the quantum information fields. The book concentrates and focuses mainly on the distinctive features of programmable photonics as compared to more traditional ASPIC approaches.
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