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Laser growth and processing of photo...
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Vainos, Nikolaos A.
Laser growth and processing of photonic devices
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Laser growth and processing of photonic devices/ edited by Nikolaos A. Vainos.
other author:
Vainos, Nikolaos A.
Published:
Cambridge :Woodhead Publishing Ltd., : 2012.,
Description:
xxiv, 467 p. :ill. ; : 24 cm.;
Subject:
Photonics. -
Online resource:
click for full text (2015 TAEBDC PDA eBooks Trial, Trial Period: 2015.6.3-2015.12.31)
ISBN:
9781845699369 (electronic bk.)
Laser growth and processing of photonic devices
Laser growth and processing of photonic devices
[electronic resource] /edited by Nikolaos A. Vainos. - 1st ed. - Cambridge :Woodhead Publishing Ltd.,2012. - xxiv, 467 p. :ill. ;24 cm. - Woodhead Publishing series in electronic and optical materials ;no. 27. - Woodhead Publishing series in electronic and optical materials ;no. 27..
Includes bibliographical references and index.
The use of lasers in the processing of electronic and photonic material is becoming increasingly widespread, with technological advances reducing costs and increasing both the quality and range of novel devices which can be produced. Laser growth and processing of photonic devices is the first book to review this increasingly important field. Part one investigates laser-induced growth of materials and surface structures, with pulsed laser deposition techniques, the formation of nanocones and the fabrication of periodic photonic microstructures explored in detail. Laser-induced three-dimensional micro- and nano-structuring are the focus of part two. Exploration of multiphoton lithography, processing and fabrication is followed by consideration of laser-based micro- and nano-fabrication, laser-induced soft matter organization and microstructuring, and laser-assisted polymer joining methods. The book concludes in part three with an investigation into laser fabrication and manipulation of photonic structures and devices. Laser seeding and thermalprocessing of glass with nanoscale resolution, laser-induced refractive index manipulation, and the thermal writing of photonic devices in glass and polymers are all considered. With its distinguished editor and international team of expert contributors, Laser growth and processing of photonic devices is an essential tool for all materials scientists, engineers and researchers inthe microelectronics industry.
ISBN: 9781845699369 (electronic bk.)Subjects--Topical Terms:
562392
Photonics.
LC Class. No.: TA1505 / .L37 2012
Dewey Class. No.: 621.381542
Laser growth and processing of photonic devices
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The use of lasers in the processing of electronic and photonic material is becoming increasingly widespread, with technological advances reducing costs and increasing both the quality and range of novel devices which can be produced. Laser growth and processing of photonic devices is the first book to review this increasingly important field. Part one investigates laser-induced growth of materials and surface structures, with pulsed laser deposition techniques, the formation of nanocones and the fabrication of periodic photonic microstructures explored in detail. Laser-induced three-dimensional micro- and nano-structuring are the focus of part two. Exploration of multiphoton lithography, processing and fabrication is followed by consideration of laser-based micro- and nano-fabrication, laser-induced soft matter organization and microstructuring, and laser-assisted polymer joining methods. The book concludes in part three with an investigation into laser fabrication and manipulation of photonic structures and devices. Laser seeding and thermalprocessing of glass with nanoscale resolution, laser-induced refractive index manipulation, and the thermal writing of photonic devices in glass and polymers are all considered. With its distinguished editor and international team of expert contributors, Laser growth and processing of photonic devices is an essential tool for all materials scientists, engineers and researchers inthe microelectronics industry.
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click for full text (2015 TAEBDC PDA eBooks Trial, Trial Period: 2015.6.3-2015.12.31)
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