Novel Optical Technologies for Nanofabrication

Novel Optical Technologies for Nanofabricatio ...
Qian Liu, Qian Liu, Xuanming D ...
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Last edited by ImportBot
October 2, 2021 | History

Novel Optical Technologies for Nanofabrication

Novel Optical Technologies for Nanofabrication describes recent advances made in micro/nanofabrication with super-resolution laser technologies, which are based on the latest research findings in the authors’ groups. It focuses on new  techniques and methods as well as applications and development trends  in laser nanofabrication, including super-resolution laser direct writing,  surface structures composed of laser path-guided wrinkle, three-dimensional laser nanofabrication based on  two-photon absorption, and nanofabrication by laser interference and surface plasmon polaritons. This book serves as a reference for academic researchers, engineers, technical professionals and graduate students in the fields of micro/nanotechnology, thin film materials, super-resolution optics and laser techniques. Qian Liu is a Professor at Laboratory for Nanodevice, National Center for Nanoscience and Technology, China. Xuanming Duan is a Professor at the Key Laboratory of Functional Crystals and Laser Technology, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, China Changsi Peng is a Professor at the Institute of Information Optical Engineering, Soochow University, China.

Publish Date
Publisher
Springer
Language
English
Pages
267

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Edition Availability
Cover of: Novel Optical Technologies for Nanofabrication
Novel Optical Technologies for Nanofabrication
2016, Springer
in English
Cover of: Novel Optical Technologies For Nanofabrication
Novel Optical Technologies For Nanofabrication
2013, Springer-Verlag Berlin and Heidelberg GmbH &
Cover of: Novel Optical Technologies for Nanofabrication
Novel Optical Technologies for Nanofabrication
Nov 27, 2013, Springer
paperback
Cover of: Novel Optical Technologies for Nanofabrication
Novel Optical Technologies for Nanofabrication
2013, Springer London, Limited
in English

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Book Details


Classifications

Library of Congress
T174.7TA418.9.N35T17

The Physical Object

Number of pages
267
Weight
4.787

ID Numbers

Open Library
OL34387476M
ISBN 13
9783662521861

Source records

Better World Books record

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October 2, 2021 Created by ImportBot Imported from Better World Books record