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Plasmonic MEMS

English · Hardback

Description

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This book covers key topics in the emerging field of plasmonic MEMS, with an emphasis on practical aspects. Although readers can find many comprehensive textbooks on electromagnetic waves, nanophotonics and plasmonics, most of these lack the focus needed for a thorough grasp of plasmonic micromachining and MEMS.

This book introduces the main framework of plasmonic MEMS, providing an overview of introductory concepts, a thorough description of the basic foundations, along with the state-of-the-art and existing challenges. The author presents an abbreviated overview of the basic physics and devices related to electromagnetic waves and surface plasmons. Additional coverage includes recent advances in the fabrication of sub-100-nm patterns on micro scale devices and structures and a review of emerging techniques in the fabrication of plasmonic systems. A comprehensive and historical review of the current advances in the area of plasmonic nanofabrication is also included.

This book focuses on an appealing and distinctive aspect of plasmonics, as a tool for patterning and the fabrication of ultra-fine resolution structures. The author reviews the recent developments in plasmonic MEMS and microsystems for biosensing applications, including refractive-index based label-free biosensing, plasmonic integrated lab-on-chip systems, plasmonic for near-field scanning optical microscopy (NSOM) and plasmonics on-chip system for cellular imaging.

List of contents

Preface.- Introduction.- Theoretical foundations.- Fabrication: from micro to nano and beyond.- Emerging techniques.- Plasmonics as a fabrication tool.- Plasmonic MEMS in biosensing and imaging.- Conclusion and perspective. 

Product details

Authors John X. J. Zhang
Publisher Springer, Berlin
 
Languages English
Product format Hardback
Released 01.01.2023
 
EAN 9783031231360
ISBN 978-3-0-3123136-0
No. of pages 191
Dimensions 168 mm x 14 mm x 240 mm
Weight 458 g
Illustrations VIII, 191 p. 122 illus., 111 illus. in color.
Series Synthesis Lectures on Materials and Optics
Subject Natural sciences, medicine, IT, technology > Technology > Mechanical engineering, production engineering

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