Three-Dimensional Magnonics: Layered, Micro- and Nanostructures

Magnonics, a research field that uses spin waves, collective excitations of ordered magnetic materials, or magnons (their quanta) as a tool for signal processing, communication, and computation, has rapidly grown during the past decade because of the low-energy consumption and potential compatibility with next-generation circuits beyond CMOS electronics. The interest in 3D magnonic nanostructures follows the latest trend in conventional electronics based on expansion from 2D planar to 3D vertically integrated structures. To remain on the same technological level, a similar expansion should be realized in magnonics.

Following this trend, this book provides an overview of recent developments in the exploitation of the third dimension in magnonics, with special focus on the propagation of spin waves in layered magnonic crystals, spin textures, curved surfaces, 3D nano-objects, and cavity magnonics.

1137494959
Three-Dimensional Magnonics: Layered, Micro- and Nanostructures

Magnonics, a research field that uses spin waves, collective excitations of ordered magnetic materials, or magnons (their quanta) as a tool for signal processing, communication, and computation, has rapidly grown during the past decade because of the low-energy consumption and potential compatibility with next-generation circuits beyond CMOS electronics. The interest in 3D magnonic nanostructures follows the latest trend in conventional electronics based on expansion from 2D planar to 3D vertically integrated structures. To remain on the same technological level, a similar expansion should be realized in magnonics.

Following this trend, this book provides an overview of recent developments in the exploitation of the third dimension in magnonics, with special focus on the propagation of spin waves in layered magnonic crystals, spin textures, curved surfaces, 3D nano-objects, and cavity magnonics.

179.95 In Stock
Three-Dimensional Magnonics: Layered, Micro- and Nanostructures

Three-Dimensional Magnonics: Layered, Micro- and Nanostructures

by Gianluca Gubbiotti (Editor)
Three-Dimensional Magnonics: Layered, Micro- and Nanostructures

Three-Dimensional Magnonics: Layered, Micro- and Nanostructures

by Gianluca Gubbiotti (Editor)

eBook

$179.95 

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Overview

Magnonics, a research field that uses spin waves, collective excitations of ordered magnetic materials, or magnons (their quanta) as a tool for signal processing, communication, and computation, has rapidly grown during the past decade because of the low-energy consumption and potential compatibility with next-generation circuits beyond CMOS electronics. The interest in 3D magnonic nanostructures follows the latest trend in conventional electronics based on expansion from 2D planar to 3D vertically integrated structures. To remain on the same technological level, a similar expansion should be realized in magnonics.

Following this trend, this book provides an overview of recent developments in the exploitation of the third dimension in magnonics, with special focus on the propagation of spin waves in layered magnonic crystals, spin textures, curved surfaces, 3D nano-objects, and cavity magnonics.


Product Details

ISBN-13: 9781000024548
Publisher: Jenny Stanford Publishing
Publication date: 07/10/2019
Sold by: Barnes & Noble
Format: eBook
Pages: 416
File size: 6 MB

About the Author

Gianluca Gubbiotti is researcher at the Perugia Institute of Materials of the Italian National Research Council (CNR), Italy.

Table of Contents

1. Dipole- Exchange Theory of Magnons in Structured Composite Nanowires and Magnonic Crystal Arrays 2. From 2D Planar Magnonic Crystals to 3D Magnonic Crystals 3. 3D Magnonic Crystals 4. Spin Waves in Magnetic Metal–Insulator Hybrid Nanostructures 5. Spin Waves in Thin Films and Magnonic Crystals with Dzyalonshinskii–Moriya interactions 6. Emission and Active Manipulation of Spin Waves in Multiferroic Heterostructures 7. Patterned Spin Textures for Magnonics 8. 3D Mode Profiles in Short-Wavelength Magnon Propagation 9. Precessional Magnetization Dynamics and Spin Waves in 3D Ferromagnetic Nanostructures 10. Spin Waves in Nanotubes: Impact of Curvature on Transport Properties 11. Strong Coupling in Cavity Magnonics

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