
Graphene for Post-Moore Silicon Optoelectronics
- English
- ePUB (mobile friendly)
- Available on iOS & Android
Graphene for Post-Moore Silicon Optoelectronics
About this book
Graphene for Post-Moore Silicon Optoelectronics
Provides timely coverage of an important research area that is highly relevant to advanced detection and control technology
Projecting device performance beyond the scaling limits of Moore's law requires technologies based on novel materials and device architecture. Due to its excellent electronic, thermal, and optical properties, graphene has emerged as a scalable, low-cost material with enormous integration possibilities for numerous optoelectronic applications. Graphene for Post-Moore Silicon Optoelectronics presents an up-to-date overview of the fundamentals, applications, challenges, and opportunities of integrating graphene and other 2D materials with silicon (Si) technologies.
With an emphasis on graphene-silicon (Gr/Si) integrated devices in optoelectronics, this valuable resource also addresses emerging applications such as optoelectronic synaptic devices, optical modulators, and infrared image sensors. The book opens with an introduction to graphene for silicon optoelectronics, followed by chapters describing the growth, transfer, and physics of graphene/silicon junctions. Subsequent chapters each focus on a particular Gr/Si application, including high-performance photodetectors, solar energy harvesting devices, and hybrid waveguide devices. The book concludes by offering perspectives on the future challenges and prospects of Gr/Si optoelectronics, including the emergence of wafer-scale systems and neuromorphic optoelectronics.
- Illustrates the benefits of graphene-based electronics and hybrid device architectures that incorporate existing Si technology
- Covers all essential aspects of Gr/Si devices, including material synthesis, device fabrication, system integration, and related physics
- Summarizes current progress and future challenges of wafer-scale 2D-Si integrated optoelectronic devices
- Explores a wide range of Gr/Si devices, such as synaptic phototransistors, hybrid waveguide modulators, and graphene thermopile image sensors
Graphene for Post-Moore Silicon Optoelectronics is essential reading for materials scientists, electronics engineers, and chemists in both academia and industry working with the next generation of Gr/Si devices.
Frequently asked questions
- Essential is ideal for learners and professionals who enjoy exploring a wide range of subjects. Access the Essential Library with 800,000+ trusted titles and best-sellers across business, personal growth, and the humanities. Includes unlimited reading time and Standard Read Aloud voice.
- Complete: Perfect for advanced learners and researchers needing full, unrestricted access. Unlock 1.4M+ books across hundreds of subjects, including academic and specialized titles. The Complete Plan also includes advanced features like Premium Read Aloud and Research Assistant.
Please note we cannot support devices running on iOS 13 and Android 7 or earlier. Learn more about using the app.
Information
Table of contents
- Cover
- Table of Contents
- Title Page
- Copyright
- Preface
- Acknowledgments
- Biography
- 1 Graphene for Silicon Optoelectronics
- 2 Growth and Transfer of Graphene for Silicon Optoelectronics
- 3 Physics of Graphene/Silicon Junctions
- 4 Graphene/Silicon Junction for High-performance Photodetectors
- 5 Graphene/Silicon Solar Energy Harvesting Devices
- 6 Graphene Silicon-integrated Waveguide Devices
- 7 Graphene for Silicon Image Sensor
- 8 System Integration with Graphene for Silicon Optoelectronics
- 9 Graphene for Silicon Optoelectronic Synaptic Devices
- 10 Challenges and Prospects of Graphene-Silicon Optoelectronics
- Index
- End User License Agreement