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  • Ab initio Theory of Magnetic Ordering: Electronic Origin of Pair- and Multi-Spin

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      Ab initio Theory of Magnetic Ordering

      by Eduardo Mendive Tapia

      Many technological applications exploit a variety of magnetic structures, or magnetic phases, to produce and optimise solid-state functionality.

      FORMAT
      Hardcover
      LANGUAGE
      English
      CONDITION
      Brand New


      Publisher Description

      Many technological applications exploit a variety of magnetic structures, or magnetic phases, to produce and optimise solid-state functionality. However, most research advances are restricted to a reduced number of phases owing to computational and resource constraints. This thesis presents an ab-initio theory to efficiently describe complex magnetic phases and their temperature-dependent properties.The central assumption is that magnetic phases evolve slowly compared with the underlying electronic structure from which they emerge. By describing how the electronic structure adapts to the type and extent of magnetic order, a theory able to describe multi-spin correlations and their effect on the magnetism at finite temperature is obtained.It is shown that multi-spin correlations are behind the temperature and magnetic field dependence of the diverse magnetism in the heavy rare earth elements. Magnetically frustrated Mn-based materials and the effect of strain are also investigated. These studies demonstrate that the performance of solid-state refrigeration can be enhanced by multi-spin effects.

      Back Cover

      Many technological applications exploit a variety of magnetic structures, or magnetic phases, to produce and optimise solid-state functionality. However, most research advances are restricted to a reduced number of phases owing to computational and resource constraints. This thesis presents an ab-initio theory to efficiently describe complex magnetic phases and their temperature-dependent properties. The central assumption is that magnetic phases evolve slowly compared with the underlying electronic structure from which they emerge. By describing how the electronic structure adapts to the type and extent of magnetic order, a theory able to describe multi-spin correlations and their effect on the magnetism at finite temperature is obtained. It is shown that multi-spin correlations are behind the temperature and magnetic field dependence of the diverse magnetism in the heavy rare earth elements. Magnetically frustrated Mn-based materials and the effect of strain are also investigated. These studies demonstrate that the performance of solid-state refrigeration can be enhanced by multi-spin effects.

      Table of Contents

      Introduction.- Ab-initio Theory of Electronic Structure.- Disordered Local Moment Theory and Fast Electronic Responses.- Minimisation of the Gibbs Free Energy: Magnetic Phase Diagrams and Caloric Eects.- Pair- and Four- Spin Interactions in the Heavy Rare Earth Elements.- Frustrated Magnetism in Mn-based Antiperovskite Mn3GaN.- Summary and Outlook.- Appendix.

      Feature

      Nominated as an outstanding PhD thesis by the University of Warwick, UK Presents an efficient ab initio description of complex magnetic phases Contributes results that can lead to improved solid-state refrigeration

      Details

      ISBN3030372375
      Author Eduardo Mendive Tapia
      Pages 131
      Series Springer Theses
      Year 2020
      ISBN-10 3030372375
      ISBN-13 9783030372378
      Format Hardcover
      Publication Date 2020-01-04
      Short Title Ab Initio Theory of Magnetic Ordering
      Language English
      Subtitle Electronic Origin of Pair- and Multi-Spin Interactions
      DOI 10.1007/978-3-030-37238-5
      UK Release Date 2020-01-04
      Imprint Springer Nature Switzerland AG
      Place of Publication Cham
      Country of Publication Switzerland
      Illustrations 34 Illustrations, color; 1 Illustrations, black and white; XVIII, 131 p. 35 illus., 34 illus. in color.
      Publisher Springer Nature Switzerland AG
      Alternative 9783030372408
      Audience Professional & Vocational
      Edition Description 2020 ed.
      Edition 2020th

      TheNile_Item_ID:126532416;
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