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Heavy fermions: superconductivity and its relationship to quantum criticality

Author
STEGLICH, Frank1
[1] Max Planck Institute of Chemical Physics of Solids, Noethnitzer Strasse 40, Dresden 01187, Germany
Source

Philosophical magazine (2003. Print). 2014, Vol 94, Num 28-30, pp 3259-3280, 22 p ; ref : 91 ref

ISSN
1478-6435
Scientific domain
Crystallography; Condensed state physics
Publisher
Taylor & Francis, Abingdon
Publication country
United Kingdom
Document type
Article
Language
English
Keyword (fr)
Addition arsenic Article synthèse Composé transfert charge Diffusion inélastique Diffusion neutron Dispositif entraînement Disruption Effet Kondo Effet pression Fermion lourd Ferromagnétique Fluctuation critique Fluctuation quantique Hafnium Isolant Mott Matériau ferromagnétique Modèle réticulaire Onde densité spin Paramètre thermique Point quantique Prototype Réseau Kondo Réseau cubique simple Sel organique Supraconducteur haute température Supraconductivité onde d Transition Mott Transition phase quantique 6112E 7215Q 7550C 8107T CeRhIn5 YbRh2Si2
Keyword (en)
Arsenic additions Reviews Charge transfer complexes Inelastic scattering Neutron diffusion Driving device Breakdown Kondo effect Pressure effects Heavy fermions Ferromagnetic materials Critical fluctuations Quantum fluctuation Hafnium Mott insulating Ferromagnetic materials Lattice model Spin density waves Thermal parameter Quantum dots Prototype Kondo lattice SC lattices Organic salt High-Tc superconductors d-wave superconductivity Mott transition Quantum phase transition
Keyword (es)
Dispositivo arrastre Material ferromagnético Modelo reticular Parámetro térmico Prototipo Red Kondo Sal orgánica Transición Mott
Classification
Pascal
001 Exact sciences and technology / 001B Physics / 001B60 Condensed matter: structure, mechanical and thermal properties / 001B60A Structure of solids and liquids; crystallography / 001B60A12 Neutron diffraction and scattering / 001B60A12E Neutron scattering techniques (including small-angle scattering)

Pascal
001 Exact sciences and technology / 001B Physics / 001B70 Condensed matter: electronic structure, electrical, magnetic, and optical properties / 001B70B Electronic transport in condensed matter / 001B70B15 Electronic conduction in metals and alloys / 001B70B15Q Scattering mechanisms and kondo effect

Pascal
001 Exact sciences and technology / 001B Physics / 001B70 Condensed matter: electronic structure, electrical, magnetic, and optical properties / 001B70E Magnetic properties and materials / 001B70E50 Studies of specific magnetic materials / 001B70E50C Other ferromagnetic metals and alloys

Pascal
001 Exact sciences and technology / 001B Physics / 001B80 Cross-disciplinary physics: materials science; rheology / 001B80A Materials science / 001B80A07 Nanoscale materials and structures: fabrication and characterization / 001B80A07T Quantum dots

Discipline
Physics and materials science Physics of condensed state : electronic structure, electrical, magnetic and optical properties Physics of condensed state : structure, mechanical and thermal properties
Origin
Inist-CNRS
Database
PASCAL
INIST identifier
28843776

Sauf mention contraire ci-dessus, le contenu de cette notice bibliographique peut être utilisé dans le cadre d’une licence CC BY 4.0 Inist-CNRS / Unless otherwise stated above, the content of this bibliographic record may be used under a CC BY 4.0 licence by Inist-CNRS / A menos que se haya señalado antes, el contenido de este registro bibliográfico puede ser utilizado al amparo de una licencia CC BY 4.0 Inist-CNRS

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