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Fano resonances in optics and microw...
~
Kamenetskii, Eugene.
Fano resonances in optics and microwavesphysics and applications /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Fano resonances in optics and microwavesedited by Eugene Kamenetskii, Almas Sadreev, Andrey Miroshnichenko.
Reminder of title:
physics and applications /
other author:
Kamenetskii, Eugene.
Published:
Cham :Springer International Publishing :2018.
Description:
xxiii, 582 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
Subject:
Scattering (Physics)
Online resource:
https://doi.org/10.1007/978-3-319-99731-5
ISBN:
9783319997315$q(electronic bk.)
Fano resonances in optics and microwavesphysics and applications /
Fano resonances in optics and microwaves
physics and applications /[electronic resource] :edited by Eugene Kamenetskii, Almas Sadreev, Andrey Miroshnichenko. - Cham :Springer International Publishing :2018. - xxiii, 582 p. :ill., digital ;24 cm. - Springer series in optical sciences,v.2190342-4111 ;. - Springer series in optical sciences ;v. 93..
Theory of Fano Resonances -- Bound States in a Continuum -- Fano Resonances and Field-Matter Chirality -- Fano Resonances in Plasmonic Structures and Metamaterials -- Fano Resonances in Microwave Structures -- Fano Resonances for Biosensing.
This book discusses the development of Fano-based techniques and reveals the characteristic properties of various wave processes by studying interference phenomena. It explains that the interaction of discrete (localized) states with a continuum of propagation modes leads to Fano interference effects in transmission, and explores novel coherent effects such as bound states in the continuum accompanied by collapse of Fano resonance. Originating in atomic physics, Fano resonances have become one of the most appealing phenomena of wave scattering in optics, microwaves, and terahertz techniques. The generation of extremely strong and confined fields at a deep subwavelength scale, far beyond the diffraction limit, plays a central role in modern plasmonics, magnonics, and in photonic and metamaterial structures. Fano resonance effects take advantage of the coupling of these bound states with a continuum of radiative electromagnetic waves. With their unique physical properties and unusual combination of classical and quantum structures, Fano resonances have an application potential in a wide range of fields, from telecommunication to ultrasensitive biosensing, medical instrumentation and data storage. Including contributions by international experts and covering the essential aspects of Fano-resonance effects, including theory, modeling and design, proven and potential applications in practical devices, fabrication, characterization and measurement, this book enables readers to acquire the multifaceted understanding required for these multidisciplinary challenges.
ISBN: 9783319997315$q(electronic bk.)
Standard No.: 10.1007/978-3-319-99731-5doiSubjects--Topical Terms:
239710
Scattering (Physics)
LC Class. No.: QC794.6.S3 / F366 2018
Dewey Class. No.: 539.758
Fano resonances in optics and microwavesphysics and applications /
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edited by Eugene Kamenetskii, Almas Sadreev, Andrey Miroshnichenko.
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Theory of Fano Resonances -- Bound States in a Continuum -- Fano Resonances and Field-Matter Chirality -- Fano Resonances in Plasmonic Structures and Metamaterials -- Fano Resonances in Microwave Structures -- Fano Resonances for Biosensing.
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This book discusses the development of Fano-based techniques and reveals the characteristic properties of various wave processes by studying interference phenomena. It explains that the interaction of discrete (localized) states with a continuum of propagation modes leads to Fano interference effects in transmission, and explores novel coherent effects such as bound states in the continuum accompanied by collapse of Fano resonance. Originating in atomic physics, Fano resonances have become one of the most appealing phenomena of wave scattering in optics, microwaves, and terahertz techniques. The generation of extremely strong and confined fields at a deep subwavelength scale, far beyond the diffraction limit, plays a central role in modern plasmonics, magnonics, and in photonic and metamaterial structures. Fano resonance effects take advantage of the coupling of these bound states with a continuum of radiative electromagnetic waves. With their unique physical properties and unusual combination of classical and quantum structures, Fano resonances have an application potential in a wide range of fields, from telecommunication to ultrasensitive biosensing, medical instrumentation and data storage. Including contributions by international experts and covering the essential aspects of Fano-resonance effects, including theory, modeling and design, proven and potential applications in practical devices, fabrication, characterization and measurement, this book enables readers to acquire the multifaceted understanding required for these multidisciplinary challenges.
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based on 0 review(s)
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