图书简介
This book presents a comprehensive overview of the design, advantages, challenges, and requirements of silicon photonics interconnects for high-performance computing systems and data centers. The selected contributions present important discussions and approaches related to the design and development of novel silicon photonic devices and interconnect architectures, electronic-photonic integration advances and challenges, latest advances in light sources (i.e., lasers), fundamental requirements in high-performance computing systems and data centers, and various design solutions to improve the performance of silicon photonic based systems under different challenges.
Features the latest advances in silicon photonics for high performance computing systems and data centers
Discusses the industries latest technologies and advances to enable silicon photonics integration into HPC systems and data centers
Describes the latest advances in electronic-photonic cointegration and challenges
Written by internationally recognized contributors
Delves into silicon photonics design automation, challenges, and solutions
Section I High-Performance Computing Interconnect Requirements and Advances Chapter 1 Silicon Photonic Modulation for High-Performance Computing Maithem Salih and Alan Mickelson Chapter 2 Laser Modulation Schemes for Minimizing Static Power Dissipation Smruti Ranjan Sarangi Chapter 3 Scalable Low-Power High-Performance Optical Network for Rack-Scale Computers Jun Feng, Jiaxu Zhang, Shixi Chen, and Jiang Xu Chapter 4 Network-in-Package for Low-Power and High-Performance Computing Armin Tajalli Section II Device- and System-Level Challenges and Improvements Chapter 5 System-Level Management of Silicon-Photonic Networks in 2.5D Systems Aditya Narayan, Ajay Joshi, and Ayse K. Coskun Chapter 6 Thermal Reliability and Communication Performance Co-optimization for WDM-Based Optical Networks-on-Chip Mengquan Li and Weichen Liu Chapter 7 Exploring Aging Effects in Photonic Interconnects for High-Performance Manycore Architectures Ishan G. Thakkar, Sudeep Pasricha, Venkata Sai Praneeth Karempudi, and Sai Vineel Reddy Chittamuru Chapter 8 Improving Energy Efficiency in Silicon Photonic Networks-on-Chip with Approximation Techniques Febin P. Sunny, Asif Mirza, Ishan Thakkar, Sudeep Pasricha, and Mahdi Nikdast Section III Novel Design Solutions and Automation Chapter 9 Automated, Scalable Silicon Photonics Design and Verification John Ferguson, Tom Daspit, Omar El-Sewefy, and Mohamed Youssef Chapter 10 Inverse-Design for High-Performance Computing Photonics Jinhie Skarda, Geun Ho Ahn, Rahul Trivedi, Tony Wu, Subhasish Mitra, and Jelena Vuckovic Chapter 11 Efficiency-Oriented Design Automation Methods for Wavelength-Routed Optical Network-on-Chip Tsun-Ming Tseng, Mengchu Li, Zhidan Zheng, Alexandre Truppel, and Ulf Schlichtmann Section IV Novel Materials, Devices, and Photonic Integrated Circuits Chapter 12 Innovative DWDM Silicon Photonics for High-Performance Computing G. Kurczveil, Y. Yuan, J. Youn, B. Tossoun, Y. Hu, S. Mathai, P. Sun, J. Hulme, and D. Liang Chapter 13 Silicon Photonic Bragg Grating Devices Mustafa Hammood, Lukas Chrostowski, and Nicolas A. F. Jaeger Chapter 14 Silicon Photonic Integrated Circuits for OAM Generation and Multiplexing Yuxuan Chen, Wei Shi, and Leslie A. Rusch Chapter 15 Novel Materials for Active Silicon Photonics Chi Xiong Section V Emerging Computing Technologies and Applications Chapter 16 Neuromorphic Silicon Photonics S. Bilodeau, T. Ferreira de Lima, C. Huang, B. J. Shastri, and P. R. Prucnal Chapter 17 Logic Computing and Neural Network on Photonic Integrated Circuit Zheng Zhao, Zhoufeng Ying, Chenghao Feng, Ray T. Chen, and David Z. Pan Chapter 18 High-Performance Programmable MZI-Based Optical Processors Farhad Shokraneh, Simon Geoffroy-Gagnon, and Odile Liboiron-Ladouceur Chapter 19 High-Performance Deep Learning Acceleration with Silicon Photonics Febin P. Sunny, Asif Mirza, Mahdi Nikdast, and Sudeep Pasricha
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