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Optomagnonic Structures: Novel Architectures For Simultaneous Control Of Light And Spin Waves [Kietas viršelis]

Edited by (National Center For Scientific Research Demokritos, Greece & Kapodistrian Univ Of Athens, Greece)
  • Formatas: Hardback, 372 pages
  • Išleidimo metai: 04-Feb-2021
  • Leidėjas: World Scientific Publishing Co Pte Ltd
  • ISBN-10: 9811220042
  • ISBN-13: 9789811220043
Kitos knygos pagal šią temą:
  • Formatas: Hardback, 372 pages
  • Išleidimo metai: 04-Feb-2021
  • Leidėjas: World Scientific Publishing Co Pte Ltd
  • ISBN-10: 9811220042
  • ISBN-13: 9789811220043
Kitos knygos pagal šią temą:
"Understanding, controlling and, more importantly, enhancing the interaction between light (photons) and spin waves (magnons) can be, among others, a step towards the realization of magnon-mediated microwave-to-optical transducers for quantum computing applications or hybrid solid-state spintronic-photonic interconnections. In this respect, the development of novel composite multifunctional micro/nanostructures - so-called optomagnonic - which simultaneously control optical and spin waves and enhance their interaction, is particularly attractive. This book constitutes a collective work, comprising seven chapters from leading researchers in the field of optomagnonics and related areas. Apart from exciting recent developments, it provides the necessary fundamental knowledge in an explanatory manner and, therefore, it is accessible to non-experts. It is suitable for PhD students, post-docs, and researchers who are willing to get engaged in optomagnonics, while selected parts could also serve as lecture material for advanced courses. With increasing demand for miniaturized optomagnonic devices, this book will be an important resource to researchers working on optomagnonics, magneto-optics, spintronics, as well as on hybrid micro/nano devices for information processing"--

Preface v
1 Tailoring the Interaction of Light with Static and Dynamic Magnetization Fields in Stratified Nanostructures
1(78)
Petros Andreas Pantazopoulos
Nikolaos Stefanou
1 Elements of electrodynamics of continuous media
2(13)
2 Light propagation in stratified media
15(13)
3 Magnetophotonic architectures
28(15)
4 Planar optomagnonic cavities
43(28)
Acknowledgment
71(1)
References
71(8)
2 Magnonics and Confinement of Light in Photonic-Magnonic Crystals
79(56)
Jaroslaw W. Klos
Igor L. Lyubchanskii
Maciej Krawczyk
Pawe Gruszecki
Szymon Mieszczak
Justyna Rychly
Yuliya S. Dadoenkova
Nataliya N. Dadoenkova
1 Introduction
80(6)
2 Magnetic interactions
86(7)
3 Spin waves in confined geometries
93(7)
4 Magnonic crystals
100(5)
5 Photonic-magnonic crystals
105(22)
6 Summary
127(1)
Acknowledgments
128(1)
References
128(7)
3 Tunable Generation of Spin Waves by Ultrashort Optical Pulses in Magnetic Dielectric Thin Films
135(40)
A. I. Chernov
M. A. Kozhaev
V. I. Belotelov
1 Introduction
136(2)
2 Control of the spin-wave generation by the laser beam parameters
138(8)
3 Periodic laser pulses as a quasi-stationary source of spin waves
146(7)
4 Optical manipulation of the spin-wave wavelength by periodic pumping
153(9)
5 Inverse Faraday effect enhancement in microcavities
162(4)
6 Localization of the inverse Faraday effect along the film thickness
166(4)
7 Conclusions
170(2)
Acknowledgments
172(1)
References
172(3)
4 Inelastic Scattering of Light by Spin Waves
175(38)
M. Benjamin Jungfleisch
1 Introduction
176(1)
2 Spin waves
177(2)
3 Brillouin light scattering
179(5)
4 Overview of experimental approaches
184(14)
5 Summary and outlook
198(1)
Acknowledgments
199(1)
References
199(14)
5 Driving Magnons with Microwave Photons
213(30)
Guo-Qiang Zhang
Yi-Pu Wang
J. Q. You
1 Introduction: Magnons coupled to microwave cavity photons
214(2)
2 Magnon Kerr effect in cavity magnonics
216(11)
3 Non-hermitian physics in cavity magnonics
227(10)
4 Conclusions
237(1)
References
238(5)
6 Spherical Optomagnonic Resonators
243(56)
Evangelos Almpanis
Grigorios P. Zouros
Nikolaos Papanikolaou
1 Introduction
244(1)
2 Electromagnetic response of an isotropic sphere
244(10)
3 Electromagnetic modes of a gyroelectric sphere
254(16)
4 Optomagnonic interaction in spherical dielectric magnetic resonators
270(18)
Appendix A Spherical harmonics
288(1)
Appendix B Spherical bessel functions
289(2)
Appendix C Expansion coefficients
291(1)
References
292(7)
7 Cavity Optomagnonics
299(56)
Silvia Viola Kusminskiy
1 Introduction
299(4)
2 Optomagnonic Hamiltonian
303(18)
3 Equations of motion
321(10)
4 Optomagnonics with a magnetic vortex
331(6)
5 A quantum protocol: All-optical magnon heralding
337(9)
6 Outlook
346(1)
References
346(9)
Index 355