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Topology in Magnetism
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SpringerLink (Online service)
Topology in Magnetism
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Topology in Magnetism/ edited by Jiadong Zang, Vincent Cros, Axel Hoffmann.
other author:
Zang, Jiadong.
Description:
XIV, 416 p. 160 illus., 146 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Magnetism. -
Online resource:
https://doi.org/10.1007/978-3-319-97334-0
ISBN:
9783319973340
Topology in Magnetism
Topology in Magnetism
[electronic resource] /edited by Jiadong Zang, Vincent Cros, Axel Hoffmann. - 1st ed. 2018. - XIV, 416 p. 160 illus., 146 illus. in color.online resource. - Springer Series in Solid-State Sciences,1920171-1873 ;. - Springer Series in Solid-State Sciences,183.
Overview -- Magnetic Solitons -- Domain Walls -- Vortices -- Bulk Skyrmions -- Thin-Film Skyrmions -- Dynamical Solitons -- Transport Phenomena -- Anomalous Hall Effect -- Spin Hall Effect -- Topological Insulator -- Weyl Semimetal -- Majorana Fermions -- Additional Topics -- Frustrated Magnetism -- Spin Liquid -- Antiferromagnets -- Multiferroicity -- Magnons.
This book presents both experimental and theoretical aspects of topology in magnetism. It first discusses how the topology in real space is relevant for a variety of magnetic spin structures, including domain walls, vortices, skyrmions, and dynamic excitations, and then focuses on the phenomena that are driven by distinct topology in reciprocal momentum space, such as anomalous and spin Hall effects, topological insulators, and Weyl semimetals. Lastly, it examines how topology influences dynamic phenomena and excitations (such as spin waves, magnons, localized dynamic solitons, and Majorana fermions). The book also shows how these developments promise to lead the transformative revolution of information technology. .
ISBN: 9783319973340
Standard No.: 10.1007/978-3-319-97334-0doiSubjects--Topical Terms:
579937
Magnetism.
LC Class. No.: QC750-766
Dewey Class. No.: 538
Topology in Magnetism
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This book presents both experimental and theoretical aspects of topology in magnetism. It first discusses how the topology in real space is relevant for a variety of magnetic spin structures, including domain walls, vortices, skyrmions, and dynamic excitations, and then focuses on the phenomena that are driven by distinct topology in reciprocal momentum space, such as anomalous and spin Hall effects, topological insulators, and Weyl semimetals. Lastly, it examines how topology influences dynamic phenomena and excitations (such as spin waves, magnons, localized dynamic solitons, and Majorana fermions). The book also shows how these developments promise to lead the transformative revolution of information technology. .
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