Vertical-cavity surface-emitting lasers and smart pixels for optical interconnection systems

T. Kurokawa
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引用次数: 1

Abstract

Though TDM (and recently WDM) are generally adopted to increase the total throughput in optical communication systems, SDM must be more effective in most optical interconnection systems. This is because SDM has more advantage in cost and power consumption than TDM, when the transmission distance is rather short, i.e. less than a few hundred meters. VCSEL and smart pixel arrays are very important for constructing optical interconnection systems because they can emit, switch and process a number of broadband optical signals simultaneously. This paper reviews VCSELs and VCSEL-based smart pixels, and discusses the issues for their application to optical interconnections. VCSELs and smart pixels are applicable to three types of parallel optical interconnections: 1) parallel optical fiber link-the optical signals from the SEL array are transmitted through a fiber ribbon for distances less than a few hundred meters; 2) free-space optical interconnects-high-density optical signals from a two-dimensional SEL array are distributed into several ports for distance shorter than one meter; 3) reconfigurable optical interconnects nterconnect patterns among processors are changed dynamically by means of free-space photonic switching networks.
光学互连系统用垂直腔面发射激光器和智能像素
虽然在光通信系统中普遍采用时分分复用(以及最近的波分复用)来提高总吞吐量,但在大多数光互连系统中,SDM必须更有效。这是因为在传输距离较短的情况下,即在几百米以内,SDM在成本和功耗方面比时分dm更有优势。VCSEL和智能像素阵列可以同时发射、切换和处理多个宽带光信号,对于构建光互连系统非常重要。本文综述了vcsel和基于vcsel的智能像素,并讨论了它们在光互连中的应用问题。vcsel和智能像素适用于三种类型的平行光互连:1)平行光纤链路——来自SEL阵列的光信号通过光纤带传输,距离小于几百米;2)自由空间光互连——来自二维SEL阵列的高密度光信号分布在距离小于1米的多个端口;3)可重构光互连利用自由空间光子交换网络动态改变处理器间的互连模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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