Anomalous and topological hall effects in itinerant magnets /

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Bibliographic Details
Author / Creator:Shiomi, Yuki.
Imprint:Tokyo ; New York : Springer, c2013.
Description:1 online resource.
Language:English
Series:Springer theses, 2190-5053
Springer theses.
Subject:
Format: E-Resource Dissertations Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/9850546
Hidden Bibliographic Details
ISBN:9784431543619 (electronic bk.)
4431543619 (electronic bk.)
9784431543602
Notes:Thesis (PhD.)-- University of Tokyo.
Includes bibliographical references.
Summary:This book presents an investigation of the anomalous and topological Hall effects in some itinerant ferromagnets and helimagnets by measurements of Hall effects driven by electrical or heat current. New clarifications are provided for spin-dependent Hall effects induced by the Berry phase, skew scattering, and scalar spin chirality.The author reveals the scattering-free nature of the Berry-phase-induced anomalous Hall current by conducting the first comparative study of electrical and thermal Hall effects. The impurity-element dependence of the anomalous Hall effect caused by skew scattering i
Description
Summary:

This book presents an investigation of the anomalous and topological Hall effects in some itinerant ferromagnets and helimagnets by measurements of Hall effects driven by electrical or heat current. New clarifications are provided for spin-dependent Hall effects induced by the Berry phase, skew scattering, and scalar spin chirality.

The author reveals the scattering-free nature of the Berry-phase-induced anomalous Hall current by conducting the first comparative study of electrical and thermal Hall effects. The impurity-element dependence of the anomalous Hall effect caused by skew scattering is systematically investigated in the low-resistivity region for Fe. Two new examples showing a topological Hall effect are found in helimagnets, in which nonzero scalar spin chirality arises from the modulation of spin structure through Dzyaloshinsky-Moriya (DM) interaction. Such a DM-interaction-mediated topological Hall effect is a new type of topological Hall effect. Also the temperature dependence of topological Hall terms in the thermal Hall effect and Nernst-Ettingshausen effect is found to be totally different from that in the electrical Hall effect.

Theseresults will be useful for applications of spin current to devices with low power consumption.

Physical Description:1 online resource.
Bibliography:Includes bibliographical references.
ISBN:9784431543619
4431543619
9784431543602
ISSN:2190-5053