首页> 外文学位 >Silicon photonics for high-performance interconnection networks.
【24h】

Silicon photonics for high-performance interconnection networks.

机译:用于高性能互连网络的硅光子学。

获取原文
获取原文并翻译 | 示例

摘要

We assert in the course of this work that silicon photonics has the potential to be a key disruptive technology in computing and communication industries. The enduring pursuit of performance gains in computing, combined with stringent power constraints, has fostered the ever-growing computational parallelism associated with chip multiprocessors, memory systems, high-performance computing systems, and data centers. Sustaining these parallelism growths introduces unique challenges for on- and off-chip communications, shifting the focus toward novel and fundamentally different communication approaches.;This work showcases that chip-scale photonic interconnection networks, enabled by high-performance silicon photonic devices, enable unprecedented bandwidth scalability with reduced power consumption. We demonstrate that the silicon photonic platforms have already produced all the high-performance photonic devices required to realize these types of networks. Through extensive empirical characterization in much of this work, we demonstrate such feasibility of waveguides, modulators, switches, and photodetectors. We also demonstrate systems that simultaneously combine many functionalities to achieve more complex building blocks. Furthermore, we leverage the unique properties of available silicon photonic materials to create novel silicon photonic devices, subsystems, network topologies, and architectures to enable unprecedented performance of these photonic interconnection networks and computing systems.;We show that the advantages of photonic interconnection networks extend far beyond the chip, offering advanced communication environments for memory systems, high-performance computing systems, and data centers. Furthermore, we explore the immense potential of all-optical functionalities implemented using parametric processing in the silicon platform, demonstrating unique methods that have the ability to revolutionize computation and communication.;Silicon photonics enables new sets of opportunities that we can leverage for performance gains, as well as new sets of challenges that we must solve. Leveraging its inherent compatibility with standard fabrication techniques of the semiconductor industry, combined with its capability of dense integration with advanced microelectronics, silicon photonics also offers a clear path toward commercialization through low-cost mass-volume production. Combining empirical validations of feasibility, demonstrations of massive performance gains in large-scale systems, and the potential for commercial penetration of silicon photonics, the impact of this work will become evident in the many decades that follow.
机译:我们认为,在这项工作中,硅光子技术有可能成为计算和通信行业中的关键破坏性技术。对计算性能的持久追求与严格的功率限制相结合,促进了与芯片多处理器,存储器系统,高性能计算系统和数据中心相关的不断增长的计算并行性。保持这些并行性的增长为片上和片外通信带来了独特的挑战,将重点转移到了新颖的,根本不同的通信方法上。这项工作表明,由高性能硅光子器件支持的芯片级光子互连网络可实现前所未有的发展带宽可扩展性,降低了功耗。我们证明,硅光子平台已经生产出实现这些类型的网络所需的所有高性能光子器件。通过在许多工作中进行广泛的经验表征,我们证明了波导,调制器,开关和光电探测器的可行性。我们还演示了同时结合许多功能以实现更复杂的构建基块的系统。此外,我们利用可用的硅光子材料的独特特性来创建新颖的硅光子设备,子系统,网络拓扑和体系结构,以实现这些光子互连网络和计算系统的空前性能。我们证明了光子互连网络的优势得到扩展远远超出了芯片,为存储系统,高性能计算系统和数据中心提供了高级通信环境。此外,我们探索了在硅平台上使用参数处理实现的全光学功能的巨大潜力,展示了具有革新计算和通信能力的独特方法。硅光子学为我们提供了新的机会,我们可以利用这些机会来提高性能,以及我们必须解决的新挑战。利用其与半导体行业标准制造技术的内在兼容性,再加上与先进微电子设备的紧密集成能力,硅光子学还为通过低成本批量生产实现商业化提供了一条清晰的道路。结合可行性的经验验证,在大型系统中获得巨大性能提升的证明以及硅光子技术的商业渗透潜力,这项工作的影响在接下来的几十年中将变得显而易见。

著录项

  • 作者

    Biberman, Aleksandr.;

  • 作者单位

    Columbia University.;

  • 授予单位 Columbia University.;
  • 学科 Speech Communication.;Engineering Electronics and Electrical.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 411 p.
  • 总页数 411
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号