利用光子-电子混合系统复兴后摩尔定律计算

Jun Feng, Shixi Chen, Jiaxu Zhang, Jiang Xu
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引用次数: 0

摘要

从高性能计算和数据中心到汽车、飞机和手机,计算系统正在集成越来越多的处理器、加速器、存储器和外围设备,以满足在严格的成本、能源、热、空间和重量限制下新应用程序迅速增长的性能要求。硅光子学技术与已开发的硅制造工艺相结合,提供可行且具有成本效益的解决方案。大量的硅光子器件和电路已经在cmos兼容的制造工艺中得到了证明。硅光子学技术为混合光电子信息系统的应用、架构、设计技术和设计自动化工具开辟了新的机遇和新的挑战。在用硅光子学实现完美计算系统的过程中,本文试图解决三个基本问题,包括计算系统如何从硅光子学技术中受益,需要哪些技术以及主要挑战是什么。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rejuvenate Post-Moore’s Law Computing with Photonics-Electronics Hybrid Systems
Computing systems, from HPC and data center to automobile, aircraft, and cellphone, are integrating growing numbers of processors, accelerators, memories, and peripherals to meet the burgeoning performance requirements of new applications under tight cost, energy, thermal, space, and weight constraints. Silicon photonics technologies piggyback onto developed silicon fabrication processes to provide viable and cost-effective solutions. A large number of silicon photonics devices and circuits have been demonstrated in CMOS-compatible fabrication processes. Silicon photonics technologies open up both new opportunities and new challenges to applications, architectures, design techniques, and design automation tools for hybrid photonicselectronics information systems. In the way of reaching perfect computing systems with silicon photonics, this paper tries to address three fundamental problems, including how computing systems could benefit from silicon photonics technologies, what technologies are required, and what the major challenges are.
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