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Theory of Strongly Correlated Fermi-Systems
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Theory of Heavy-Fermion Compounds Theory of Strongly Correlated Fermi-Systems

AMUSIA, Miron Ya. - Personal Name; POPOV, Konstantin G. - Personal Name; SHAGINYAN, Vasily R. - Personal Name;

This book explains modern and interesting physics in heavy-fermion (HF) compounds to graduate students and researchers in condensed matter physics. It presents a theory of heavy-fermion (HF) compounds such as HF metals, quantum spin liquids, quasicrystals and two-dimensional Fermi systems. The basic low-temperature properties and the scaling behavior of the compounds are described within the framework of the theory of fermion condensation quantum phase transition (FCQPT). Upon reading the book, the reader finds that HF compounds with quite different microscopic nature exhibit the same non-Fermi liquid behavior, while the data collected on very different HF systems have a universal scaling behavior, and these compounds are unexpectedly uniform despite their diversity. For the reader's convenience, the analysis of compounds is carried out in the context of salient experimental results. The numerous calculations of the non-Fermi liquid behavior, thermodynamic, relaxation and transport properties, being in good agreement with experimental facts, offer the reader solid grounds to learn the theory's applications. Finally, the reader will learn that FCQPT develops unexpectedly simple, yet completely good description of HF compounds.


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Detail Information
Series Title
-
Call Number
-
Publisher
: Springer Cham., 2015
Collation
-
Language
English
ISBN/ISSN
978-3-319-10825-4
Classification
NONE
Content Type
text
Media Type
computer
Carrier Type
online resource
Edition
-
Subject(s)
Mathematical Methods in Physics
Solid State Physics
Metallic Materials
Low Temperature Physics
Specific Detail Info
-
Statement of Responsibility
Miron Ya. Amusia, Konstantin G. Popov, Vasily R. Shaginyan, Vladimir A. Stephanovich
Other Information
Cataloger
Yudi
Source
-
Validator
-
Digital Object Identifier (DOI)
-
Journal Volume
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Journal Issue
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  • Theory of Heavy-Fermion Compounds Theory of Strongly Correlated Fermi-Systems
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