Description: Integrated Nanophotonics : Platforms, Devices, and Applications, Hardcover by Yu, Peng (EDT); Xu, Hongxing (EDT); Wang, Zhiming (EDT), ISBN 352734912X, ISBN-13 9783527349128, Like New Used, Free shipping in the US Integrated Nanophotonics Helps readers understand the important advances in nanophotonics materials development and their latest applications This book introduces the current state of and emerging trends in the development of integrated nanophotonics. Written by three well-qualified authors, it systematically reviews the knowledge of integrated nanophotonics from theory to the most recent technological developments. It also covers the applications of integrated nanophotonics in essential areas such as neuromorphic computing, biosensing, and optical communications. Lastly, it brings together the latest advancements in the key principles of photonic integrated circuits, plus the recent advances in tackling the barriers in photonic integrated circuits. Sample topics included in this comprehensive resource include: Platforms for integrated nanophotonics, including lithium niobate nanophotonics, indium phosphide nanophotonics, silicon nanophotonics, and nonlinear optics for integrated photonics The devices and technologies for integrated nanophotonics in on-chip light sources, optical packaging of photonic integrated circuits, optical interconnects, and light processing devices Applications on neuromorphic computing, biosensing, LIDAR, and computing for AI and artificial neural network and deep learning Materials scientists, physicists, and physical chemists can use this book to understand the totality of cutting-edge theory, research, and applications in the field of integrated nanophotonics.
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Item Length: 9.6in
Item Height: 0.9in
Item Width: 6.7in
Author: Hongxing Xu
Publication Name: Integrated Nanophotonics : Platforms, Devices, and Applications
Format: Hardcover
Language: English
Publisher: Wiley & Sons, Incorporated, John
Publication Year: 2023
Type: Textbook
Item Weight: 32.1 Oz
Number of Pages: 384 Pages