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Ion irradiation of dielectrics for p...
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Amekura, Hiroshi.
Ion irradiation of dielectrics for photonic applications
Record Type:
Electronic resources : Monograph/item
Title/Author:
Ion irradiation of dielectrics for photonic applicationsby Feng Chen, Hiroshi Amekura, Yuechen Jia.
Author:
Chen, Feng.
other author:
Amekura, Hiroshi.
Published:
Singapore :Springer Singapore :2020.
Description:
xviii, 290 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
Subject:
Ion bombardment.
Online resource:
https://doi.org/10.1007/978-981-15-4607-5
ISBN:
9789811546075$q(electronic bk.)
Ion irradiation of dielectrics for photonic applications
Chen, Feng.
Ion irradiation of dielectrics for photonic applications
[electronic resource] /by Feng Chen, Hiroshi Amekura, Yuechen Jia. - Singapore :Springer Singapore :2020. - xviii, 290 p. :ill., digital ;24 cm. - Springer series in optical sciences,v.2310342-4111 ;. - Springer series in optical sciences ;v. 93..
Fundamentals of Waveguides and Nanoparticle Systems -- Overview of Ion Beam Produced Dielectric Waveguides -- Photonic Structures Produced by Ion Beams -- Synthesis of Nanoparticles by Ion Implantation -- Elongation for Nanorods and Optical Effects -- Electrooptic Properties of Dielectric Waveguides -- Photoluminescence of Dielectric Waveguides -- Nonlinear Optical Dielectric Waveguides -- Lasing Based Dielectric Waveguides -- Tailoring of Optical Properties by Nanoparticles -- Summary and Outlook.
This book focuses on the fundamentals, technologies and properties of ion irradiation of dielectric materials (e.g. glasses, crystals) with regard to various photonic applications. It introduces readers to diverse ion-beam techniques for the fabrication and modification of micron- or nanoscale photonic structures, including optical waveguides, photonic crystals, and nanoparticle (nano-spheres and nano-rods) systems, and presents state-of-the-art advances in this multi-disciplinary research field, demonstrating the unique capabilities of ion-beam technologies in optical dielectric materials processing. The book discusses in detail the properties of ion-beam processed waveguides, as well as the modification of dielectrics for photonic applications, such as electro-optic modulation, nonlinear frequency conversion, waveguide amplification and lasing. It also explores synthesis and the correlated optical effects of nanoparticles by ion beams, and features examples of successful micro- and nano-photonic devices. Given its breadth of coverage, the book will particularly appeal to readers interested in ion-beam technology, materials science, and integrated optics.
ISBN: 9789811546075$q(electronic bk.)
Standard No.: 10.1007/978-981-15-4607-5doiSubjects--Topical Terms:
280953
Ion bombardment.
LC Class. No.: QC702.7.B65 / C446 2020
Dewey Class. No.: 530.416
Ion irradiation of dielectrics for photonic applications
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by Feng Chen, Hiroshi Amekura, Yuechen Jia.
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Fundamentals of Waveguides and Nanoparticle Systems -- Overview of Ion Beam Produced Dielectric Waveguides -- Photonic Structures Produced by Ion Beams -- Synthesis of Nanoparticles by Ion Implantation -- Elongation for Nanorods and Optical Effects -- Electrooptic Properties of Dielectric Waveguides -- Photoluminescence of Dielectric Waveguides -- Nonlinear Optical Dielectric Waveguides -- Lasing Based Dielectric Waveguides -- Tailoring of Optical Properties by Nanoparticles -- Summary and Outlook.
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This book focuses on the fundamentals, technologies and properties of ion irradiation of dielectric materials (e.g. glasses, crystals) with regard to various photonic applications. It introduces readers to diverse ion-beam techniques for the fabrication and modification of micron- or nanoscale photonic structures, including optical waveguides, photonic crystals, and nanoparticle (nano-spheres and nano-rods) systems, and presents state-of-the-art advances in this multi-disciplinary research field, demonstrating the unique capabilities of ion-beam technologies in optical dielectric materials processing. The book discusses in detail the properties of ion-beam processed waveguides, as well as the modification of dielectrics for photonic applications, such as electro-optic modulation, nonlinear frequency conversion, waveguide amplification and lasing. It also explores synthesis and the correlated optical effects of nanoparticles by ion beams, and features examples of successful micro- and nano-photonic devices. Given its breadth of coverage, the book will particularly appeal to readers interested in ion-beam technology, materials science, and integrated optics.
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