Integrated Silicon Metal Systems At The Nanoscale PDF
It is an amazing Technology & Engineering book written by Munir H. Nayfeh and published by Elsevier. This book was released on 01 April 2023 with total pages 0. Read book in PDF, EPUB and Kindle directly from your devices anywhere anytime. Click Download button to get Integrated Silicon-Metal Systems at the Nanoscale book now. This site is like a library, Use search box to get ebook that you want.
- Author : Munir H. Nayfeh
- Release Date : 01 April 2023
- Publisher : Elsevier
- Genre : Technology & Engineering
- Pages : 0
- ISBN 13 : 0443186731
- Total Download : 480
- File Size : 43,8 Mb
Integrated Silicon-Metal Systems at the Nanoscale PDF Summary
Integrated Silicon-Metal Systems at the Nanoscale: Applications in Photonics, Quantum Computing, Networking, and Internet is a comprehensive guide to the interaction, materials, and functional integration at the nanoscale, of the silicon-metal binary system and a variety of emerging and next-generation advanced device applications, from energy and electronics, to sensing, to quantum computing and quantum internet networks. The book guides the readers through advanced techniques and etching processes, combining underlying principles, materials science, design, and operation of metal-Si nanodevices. Each chapter focuses on a specific use of integrated metal-silicon nanostructures, including storage and resistive next-generation nano memory and transistors, photo and molecular sensing, harvest and storage device electrodes, phosphor light converters, and hydrogen fuel cells, as well as future application areas, such as spin transistors, quantum computing, hybrid quantum devices, and quantum engineering, networking, and internet. This is a valuable resource for researchers and advanced students in nanomaterials and nanotechnology, electronics engineering, quantum computing, physics, and materials engineering, as well as for materials engineers, industrial scientists, and R&D professionals with an interest in silicon-metal nanodevices for state-of-the-art applications.