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Strongly correlated Fermi systems: a new state of matter

This book focuses on the topological fermion condensation quantum phase transition (FCQPT), a phenomenon that reveals the complex behavior of all strongly correlated Fermi systems, such as heavy fermion metals, quantum spin liquids, quasicrystals, and two-dimensional systems, considering these as a...

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Detalles Bibliográficos
Autores principales: Amusia, Miron, Shaginyan, Vasily
Lenguaje:eng
Publicado: Springer 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-3-030-50359-8
http://cds.cern.ch/record/2727027
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author Amusia, Miron
Shaginyan, Vasily
author_facet Amusia, Miron
Shaginyan, Vasily
author_sort Amusia, Miron
collection CERN
description This book focuses on the topological fermion condensation quantum phase transition (FCQPT), a phenomenon that reveals the complex behavior of all strongly correlated Fermi systems, such as heavy fermion metals, quantum spin liquids, quasicrystals, and two-dimensional systems, considering these as a new state of matter. The book combines theoretical evaluations with arguments based on experimental grounds demonstrating that the entirety of very different strongly correlated Fermi systems demonstrates a universal behavior induced by FCQPT. In contrast to the conventional quantum phase transition, whose physics in the quantum critical region are dominated by thermal or quantum fluctuations and characterized by the absence of quasiparticles, the physics of a Fermi system near FCQPT are controlled by a system of quasiparticles resembling the Landau quasiparticles. The book discusses the modification of strongly correlated systems under the action of FCQPT, representing the “missing” instability, which paves the way for developing an entirely new approach to condensed matter theory; and presents this physics as a new method for studying many-body objects. Based on the authors’ own theoretical investigations, as well as salient theoretical and experimental studies conducted by others, the book is well suited for both students and researchers in the field of condensed matter physics.
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spelling cern-27270272021-04-21T18:05:35Zdoi:10.1007/978-3-030-50359-8http://cds.cern.ch/record/2727027engAmusia, MironShaginyan, VasilyStrongly correlated Fermi systems: a new state of matterParticle Physics - TheoryThis book focuses on the topological fermion condensation quantum phase transition (FCQPT), a phenomenon that reveals the complex behavior of all strongly correlated Fermi systems, such as heavy fermion metals, quantum spin liquids, quasicrystals, and two-dimensional systems, considering these as a new state of matter. The book combines theoretical evaluations with arguments based on experimental grounds demonstrating that the entirety of very different strongly correlated Fermi systems demonstrates a universal behavior induced by FCQPT. In contrast to the conventional quantum phase transition, whose physics in the quantum critical region are dominated by thermal or quantum fluctuations and characterized by the absence of quasiparticles, the physics of a Fermi system near FCQPT are controlled by a system of quasiparticles resembling the Landau quasiparticles. The book discusses the modification of strongly correlated systems under the action of FCQPT, representing the “missing” instability, which paves the way for developing an entirely new approach to condensed matter theory; and presents this physics as a new method for studying many-body objects. Based on the authors’ own theoretical investigations, as well as salient theoretical and experimental studies conducted by others, the book is well suited for both students and researchers in the field of condensed matter physics.Springeroai:cds.cern.ch:27270272020
spellingShingle Particle Physics - Theory
Amusia, Miron
Shaginyan, Vasily
Strongly correlated Fermi systems: a new state of matter
title Strongly correlated Fermi systems: a new state of matter
title_full Strongly correlated Fermi systems: a new state of matter
title_fullStr Strongly correlated Fermi systems: a new state of matter
title_full_unstemmed Strongly correlated Fermi systems: a new state of matter
title_short Strongly correlated Fermi systems: a new state of matter
title_sort strongly correlated fermi systems: a new state of matter
topic Particle Physics - Theory
url https://dx.doi.org/10.1007/978-3-030-50359-8
http://cds.cern.ch/record/2727027
work_keys_str_mv AT amusiamiron stronglycorrelatedfermisystemsanewstateofmatter
AT shaginyanvasily stronglycorrelatedfermisystemsanewstateofmatter