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基于光学格子特性研制光路由器的数值分析(包含选题审批表,任务书,开题报告,中期检查报告,毕业论文13000字)
摘 要:光子代替电子作为信息的载体是人们的一个共识,因为光子技术具有高传输速度、高密度及高容错性等优点。由于光子不像电子那样容易控制,所以光子器件远不如电子器件成熟,导致光信息技术仅在信息传输中得到应用,而且是最基本的信息功能。研究光波与新型光子材料的相互作用,探索利用光子材料对光子的操纵和控制,是发展新型光子器件的基础,对光计算、全光通信等领域具有重要的理论和实际意义。周期性微结构光子材料,如布拉格光栅、光子晶体、光学格子、超常介质等,使人们操纵和控制光子的梦想成为可能,是发展全光器件的理想材料。本文主要论述的是基于光学格子特性研制光路由器的数值分析。
关键词:光学格子;光路由器;光传输;光弧子;
Numerical Analysis Based on Optical Lattice Property Development Optical Router
Abstract: It is a consensus to replace electron with photon as the carrier of information because photonic technology has several advantages, such as high transmission speed high density and high fault tolerance. However, photons are not so prone to be controlled as electrons, and the photonic devices are far from mature compared to electronic component, which result in that optical information technonlogy has been only applied to information transmission, further more, the basic information function. Thus, the research on the interaction between light wave and new type photonic material and the exploration of
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