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Thermal Transport in Strongly Correlated Rare-Earth Intermetallic Compounds
Details
This thesis explores thermal transport in selected rare-earth-based intermetallic compounds to answer questions of great current interest. It also sheds light on the interplay of Kondo physics and Fermi surface changes.
By performing thermal conductivity and electrical resistivity measurements at temperatures as low as 25mK, the author demonstrates that the WiedemannFranz law, a cornerstone of metal physics, is violated at precisely the magnetic-field-induced quantum critical point of the heavy-fermion metal YbRh2Si2. This first-ever observation of a violation has dramatic consequences, as it implies a breakdown of the quasiparticle picture.
Utilizing an innovative technique to measure low-temperature thermal transport isothermally as a function of the magnetic field, the thesis interprets specific, partly newly discovered, high-field transitions in CeRu2Si2 and YbRh2Si2 as Lifshitz transitions related to a change in the Fermi surface. Lastly, by applying this new technique to thermal conductivity measurements of the skutterudite superconductor LaPt4Ge12, the thesis proves that the system is a conventional superconductor with a single energy gap. Thus, it refutes the widespread speculations about unconventional Cooper pairing in this material.
Nominated as an outstanding Ph.D. thesis by the Max Planck Institute for the Chemical Physics of Solids, Dresden Presents innovative experiments at extraordinarily low temperatures Sheds new light on the interplay of Kondo physics and Fermi surface changes Includes supplementary material: sn.pub/extras
Inhalt
Introduction.- Theoretical Models.- Experimental Techniques for Transport Measurements.- The Wiedemann-Franz Law in YbRh2Si2.- Kondo Lattices in Magnetic Field.- The Superconducting Order Parameter of LaPt4Ge12.- Summary and Outlook.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783319819105
- Auflage Softcover reprint of the origi
- Sprache Englisch
- Genre Maschinenbau
- Lesemotiv Verstehen
- Anzahl Seiten 118
- Größe H235mm x B155mm
- Jahr 2018
- EAN 9783319819105
- Format Kartonierter Einband
- ISBN 978-3-319-81910-5
- Veröffentlichung 30.05.2018
- Titel Thermal Transport in Strongly Correlated Rare-Earth Intermetallic Compounds
- Autor Heike Pfau
- Untertitel Springer Theses
- Gewicht 2234g
- Herausgeber Springer, Berlin