Light-controlled multichannel switches on the basis of nonlinear interferometers for optical communication lines and networks

A. M. Goncharenko, G. Sinitsyn, A. Lyakhnovich, S. Apanasevich, M. Khodasevich, A. Kazberuk, Yu. A. Varaxa, A. V. Burak, V. A. Klinouski
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引用次数: 1

Abstract

The phenomenon of optical bistability (OB), including the so-called transverse effects in distributed OB-systems, offers additional opportunities for development of new architecture designs in optical systems of information processing and communications. In particular, this contribution deals with a class of all-optical multiplexers/demultiplexers (MDM) for data redirecting and processing in the nodes of fiber-optical communication channels and networks. Their specific features are dynamic connection remapping and the possibility of applying WDM/DWDM techniques. As switching elements optically nonlinear and bistable thin-film Fabry-Perot interferometers (TFI) are used. Thus the developed MDM are capable of operating at several wavelengths that correspond to the carrier frequency set of working bands of WDM/DWDM systems.
光通信线路和网络中基于非线性干涉仪的光控多路开关
光学双稳性(OB)现象,包括分布式OB系统中所谓的横向效应,为信息处理和通信光学系统的新架构设计的发展提供了额外的机会。特别是,该贡献涉及一类用于光纤通信通道和网络节点中的数据重定向和处理的全光多路复用器/解路复用器(MDM)。它们的具体特点是动态连接重映射和应用WDM/DWDM技术的可能性。开关元件采用非线性双稳薄膜法布里-珀罗干涉仪(TFI)。因此,所开发的MDM能够在与WDM/DWDM系统工作频带的载波频率集相对应的几个波长上工作。
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