Angle resolved photoemission spectroscopy of delafossite metals / Veronika Sunko.
2019
QC454.P48
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Title
Angle resolved photoemission spectroscopy of delafossite metals / Veronika Sunko.
Author
ISBN
9783030310875 (electronic book)
3030310876 (electronic book)
3030310876 (electronic book)
Published
Cham : Springer, 2019.
Language
English
Description
1 online resource (xvii, 198 pages) : illustrations.
Item Number
10.1007/978-3-030-31 doi
Call Number
QC454.P48
Dewey Decimal Classification
530.41
Summary
This thesis describes the results of angle resolved photoemission spectroscopy experiments on delafossite oxide metals, and theoretical work explaining these observations. The study was motivated by the extraordinarily high conductivity of the non-magnetic delafossites PdCoO2 and PtCoO2, the measurement of whose electronic structure is reported and discussed. Two unexpected effects were observed in the course of the investigation; each is described and analysed in detail. Firstly, a previously unrecognised type of spectroscopic signal, allowing the non-magnetic probe of photoemission to become sensitive to spin-spin correlations, was observed in the antiferromagnetic PdCrO2. Its origin was identified as the Kondo-like coupling of itinerant and Mott insulating electrons. Furthermore, surface states exhibiting an unusually large Rashba-like spin-splitting were observed on the transition metal terminated surfaces of delafossites. The large inversion symmetry breaking energy scale, a consequence of the unusual structure of the surface layer, is identified as the origin of the effect.
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Includes bibliographical references.
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Online resource; title from PDF title page (SpringerLink, viewed October 3, 2019).
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Table of Contents
Introduction
Angle Resolved Photoemission
Theory and Models
Bulk States in PtCoO2 and PdCoO2
Coupling of Metallic and Mott-insulating states in PdCrO2
Rashba-like Spin-Split Surface States
Conclusions and Outlook
Appendices.
Angle Resolved Photoemission
Theory and Models
Bulk States in PtCoO2 and PdCoO2
Coupling of Metallic and Mott-insulating states in PdCrO2
Rashba-like Spin-Split Surface States
Conclusions and Outlook
Appendices.