Maxim Yu. Kagan Kliment I. Kugel Alexander L. Rakhmanov Artem O. Sboychakov Yu. Kagan Electronic Phase Separation in Magnetic and Superconducting Materials

Electronic Phase Separation in Magnetic and Superconducting Materials

von Maxim Yu. Kagan Kliment I. Kugel Alexander L. Rakhmanov Artem O. Sboychakov

Recent Advances

Preis unbekannt

Buch in deiner Nähe kaufen


...oder deine aktuelle Postleitzahl eingeben:
oder

Beschreibung

This book focuses on nanoscale electronic phase separation in a wide class of different materials, especially in strongly correlated electron systems. It features an extensive review of the field of inhomogeneous spin and charge states in condensed matter physics while delivering a topical and timely discussion of a wide range of recent advances in electronic phase separation. It describes the formation of different types of nanoscale ferromagnetic metallic droplets in antiferromagnetically ordered, charge-ordered, or orbitally-ordered insulating matrices, as well as the colossal magnetoresistance effect and tunneling electron transport in the nonmetallic phase-separated state of complex magnetic oxides. It also discusses compounds with spin-state transitions, inhomogeneously phase-separated states in strongly correlated multiband systems, and the electron polaron effect, paying special attention to systems with imperfect Fermi surface-nesting such as chromium alloys, iron-based pnictides, and AA-stacked graphene bilayers. The authors investigate also the formation of order parameter clusters and insulator-superconductor transition in different superconducting systems including bismuth oxides, two-dimensional films in the presence of strong disorder, as well as inhomogeneous Fermi-Bose mixtures in Aharonov-Bohm rings with a superconducting bridge in a topologically nontrivial state. This book is a valuable resource for researchers involved in theoretical and experimental studies of strongly correlated materials, such as magnetic semiconductors, Fermi-Bose mixtures, and twisted bilayer graphene.
This book focuses on nanoscale electronic phase separation in a wide class of different materials, especially in strongly correlated electron systems. It features an extensive review of the field of inhomogeneous spin and charge states in condensed matter physics while delivering a topical and timely discussion of a wide range of recent advances in electronic phase separation. It describes the formation of different types of nanoscale ferromagnetic metallic droplets in antiferromagnetically ordered, charge-ordered, or orbitally-ordered insulating matrices, as well as the colossal magnetoresistance effect and tunneling electron transport in the nonmetallic phase-separated state of complex magnetic oxides. It also discusses compounds with spin-state transitions, inhomogeneously phase-separated states in strongly correlated multiband systems, and the electron polaron effect, paying special attention to systems with imperfect Fermi surface-nesting such as chromium alloys, iron-based pnictides, and AA-stacked graphene bilayers. The authors investigate also the formation of order parameter clusters and insulator-superconductor transition in different superconducting systems including bismuth oxides, two-dimensional films in the presence of strong disorder, as well as inhomogeneous Fermi-Bose mixtures in Aharonov-Bohm rings with a superconducting bridge in a topologically nontrivial state. This book is a valuable resource for researchers involved in theoretical and experimental studies of strongly correlated materials, such as magnetic semiconductors, Fermi-Bose mixtures, and twisted bilayer graphene.
Features an extensive review of the field of inhomogeneous spin and charge states in condensed matter physics Discusses the most recent experimental and theoretical results available in the literature Appeals to researchers working on correlated electronic systems, topological materials, unconventional superconductors

Autor*in

Maxim Yu. Kagan

Themen in »Electronic Phase Separation in Magnetic and Superconducting Materials«

Spin-State Transitions Graphene-Based Materials Strongly Correlated Electron Systems Magnetic Polarons Orbital Ordering Imperfect Nesting Electronic Phase Separation Two-Dimensional Electron Gas Space-Separated Fermi-Bose Mixtures Nanosized Ferromagnetic Droplets Magnetic Semiconductors Doped Manganites Doped Bilayer Graphene Nanoscale Electronic Phase Separation

Stimmen zu »Electronic Phase Separation in Magnetic and Superconducting Materials«

Details

ISBN: 9783031554698
Verlag: Springer International Publishing
Erscheinung: 04.06.2025

Link teilen


Über buchnah.de | Die Buchhandlungen | Die Verlage | Impressum & Kontakt | Datenschutz | Presse


Auf dieser Seite kannst Du Buchhandlungen in der Nähe finden