Brillouin Scattering Part 2: Volume 110
Language: English
Published by Academic Press, 2022
- Hardcover
- New

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- Title
- Brillouin Scattering Part 2: Volume 110
- Author
- Eggleton
- Publisher
- Academic Press
- Publication year
- 2022
- Condition
- new
- Binding
- Hardcover
- Language
- English
- ISBN 10
- 0323989314
- ISBN 13
- 9780323989312
- Item weight
- 0.76 kilograms
Brillouin Scattering, Part Two, Volume 110 in the Semiconductors and Semimetal series, marks the centenary of Leon Brillouin’s seminal 1922 paper which provided a detailed theory on the effect that now bears his name. Sections in this new release include Optical Fiber Sensors Based on Stimulated Brillouin scattering, Brillouin-based RF frequency sources, SBS for Microwave Photonics (MWP), Engineerable Brillouin processes for integrated photonics, SBS in optical communication systems - the good, the bad and the ugly, Slow light, dynamic gratings and light storage, Non-reciprocity in Brillouin scattering, Electromechanical Brillouin Scattering, and Brillouin light scattering for studying mechanics of biological systems.
Stimulated Brillouin Scattering (SBS) is the strongest third order nonlinearity and plays an important role in contemporary science and applications, particularly lasers, communications, fiber optics and basic physics. This volume provides different perspectives on current technological contexts of SBS in a range of different application areas, including sensing, communications, radar, imaging and information storage.
- Presented by the leading researchers in the field
- Covers both scientific and technological perspectives
- Provides different perspectives on current technological contexts of SBS in a range of different application areas, including sensing, communications, radar, imaging and information storage
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About the Author
Michael J. Steel is a Professor of physics in the School of Mathematical and Physical Sciences at Macquarie University in northern Sydney, Australia. His research interests include theoretical nonlinear optics and quantum optics in waveguides, with particular focus on properties of periodic waveguides, generation and manipulation of photon states, opto-acoustic interactions in waveguides, and experimental and theoretical properties of optical devices generated by femtosecond laser direct write processing. Prof. Steel received his PhD in theoretical nonlinear optics in 1996 from the University of Sydney followed by postdoctoral work on Bose-Einstein condensation at the University of Auckland and photonic crystals at Columbia University. In late 2000, he joined the photonic design software company RSoft, where he wrote a number of software tools including advanced physical models for optical communication link-level simulation, and the world’s first commercial photonic band structure analysis tool, BandSOLVE, used in companies and universities throughout the world. In 2007 he joined Macquarie University as an associate professor in optics. From 2016-2021 he was Head of the Department of Physics and Astronomy, also serving as Interim Head of the Department of Mathematics and Statistics during 2019-2020. In 2017-2018, he led a major initiative for Macquarie University to acquire the technology arm of the Australian Astronomical Observatory, and served as Interim Director of the new Australian Astronomical Optics Department of the University from 2018-2019. He has been Secretary of the Australian and New Zealand Optical Society (ANZOS) since January 2021.
Christopher G. Poulton is a Professor in the School of Mathematical Sciences at the University of Technology Sydney (UTS). His area of research is theoretical photonics, specializing in numerical and analytical methods in electromagnetic and elastic wave propagation in complex materials. His research includes work on photonic crystal fibres, opto-acoustic scattering, Brillouin scattering, metamaterials, and the modelling of optical nonlinearities. Dr Poulton received his PhD from the University of Sydney in 2000 for his work on electromagnetic and elastodynamic wave propagation in periodic materials. In 2000 he was appointed Lecturer in Applied Mathematics at the University of Liverpool, UK, where he worked on analytic and numerical models of photonic and phononic crystals. From 2002-2005 he was a post-doctoral fellow at the Institute for High-frequency and Quantum Electronics at the University of Karlsruhe (now KIT), Germany, where he worked closely with experimentalists on developing integrated nonlinear devices. At the beginning of 2006 he joined the Max Planck Research Group (photonics and new materials) in Erlangen, Germany, where he worked on plasmonic interactions and guidance in photonic crystal fibres. He returned to Australia to take up a position at UTS in 2007. Prof. Poulton was Head of Discipline of the Mathematical Sciences at UTS from 2015-2022, where he continues to teach, mentor and carry out his research. Since returning to Australia in 2007 much of his research has focused on optomechanics, Brillouin scattering and the mathematics of elastic waves.
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