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Physics of heavy fermions: heavy fermions and strongly correlated electrons systems

A large variety of materials prove to be fascinating in solid state and condensed matter physics. New materials create new physics, which is spearheaded by the international experimental expert, Prof Yoshichika Onuki. Among them, the f electrons of rare earth and actinide compounds typically exhibit...

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Autor principal: Onuki, Yoshichika
Lenguaje:eng
Publicado: World Scientific 2018
Materias:
Acceso en línea:http://cds.cern.ch/record/2621671
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author Onuki, Yoshichika
author_facet Onuki, Yoshichika
author_sort Onuki, Yoshichika
collection CERN
description A large variety of materials prove to be fascinating in solid state and condensed matter physics. New materials create new physics, which is spearheaded by the international experimental expert, Prof Yoshichika Onuki. Among them, the f electrons of rare earth and actinide compounds typically exhibit a variety of characteristic properties, including spin and charge orderings, spin and valence fluctuations, heavy fermions, and anisotropic superconductivity. These are mainly manifestations of better competitive phenomena between the RKKY interaction and the Kondo effect. The present text is written so as to understand these phenomena and the research they prompt. For example, superconductivity was once regarded as one of the more well-understood many-body problems. However, it is, in fact, still an exciting phenomenon in new materials. Additionally, magnetism and superconductivity interplay strongly in heavy fermion superconductors. The understanding of anisotropic superconductivity and magnetism is a challenging problem in solid state and condensed matter physics. This book will tackle all these topics and more.
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spelling cern-26216712021-04-21T18:48:56Zhttp://cds.cern.ch/record/2621671engOnuki, YoshichikaPhysics of heavy fermions: heavy fermions and strongly correlated electrons systemsParticle Physics - TheoryCondensed MatterA large variety of materials prove to be fascinating in solid state and condensed matter physics. New materials create new physics, which is spearheaded by the international experimental expert, Prof Yoshichika Onuki. Among them, the f electrons of rare earth and actinide compounds typically exhibit a variety of characteristic properties, including spin and charge orderings, spin and valence fluctuations, heavy fermions, and anisotropic superconductivity. These are mainly manifestations of better competitive phenomena between the RKKY interaction and the Kondo effect. The present text is written so as to understand these phenomena and the research they prompt. For example, superconductivity was once regarded as one of the more well-understood many-body problems. However, it is, in fact, still an exciting phenomenon in new materials. Additionally, magnetism and superconductivity interplay strongly in heavy fermion superconductors. The understanding of anisotropic superconductivity and magnetism is a challenging problem in solid state and condensed matter physics. This book will tackle all these topics and more.World Scientificoai:cds.cern.ch:26216712018
spellingShingle Particle Physics - Theory
Condensed Matter
Onuki, Yoshichika
Physics of heavy fermions: heavy fermions and strongly correlated electrons systems
title Physics of heavy fermions: heavy fermions and strongly correlated electrons systems
title_full Physics of heavy fermions: heavy fermions and strongly correlated electrons systems
title_fullStr Physics of heavy fermions: heavy fermions and strongly correlated electrons systems
title_full_unstemmed Physics of heavy fermions: heavy fermions and strongly correlated electrons systems
title_short Physics of heavy fermions: heavy fermions and strongly correlated electrons systems
title_sort physics of heavy fermions: heavy fermions and strongly correlated electrons systems
topic Particle Physics - Theory
Condensed Matter
url http://cds.cern.ch/record/2621671
work_keys_str_mv AT onukiyoshichika physicsofheavyfermionsheavyfermionsandstronglycorrelatedelectronssystems