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Thermal and electrical transport across a magnetic quantum critical point
Heike Pfau
, Stefanie Hartmann
, Ulrike Stockert
, Peijie Sun
, Stefan Lausberg
, Manuel Brando
, Sven Friedemann
, Cornelius Krellner
, Christoph Geibel
, Steffen Wirth
, Stefan Kirchner
, Elihu Abrahams
, Qimiao Si
, Frank Steglich
Physics
Research output
:
Contribution to journal
›
Article
›
peer-review
81
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Scopus citations
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Keyphrases
Electrical Transport
100%
Quasiparticles
100%
Thermal Transport
100%
Quantum Critical Point
100%
Electrical Conductivity
66%
Magnetic Field
66%
Fermi Liquid
66%
Wiedemann-Franz Law
66%
Low Temperature
33%
Critical Fluctuations
33%
Antiferromagnetic Order
33%
Electronic Excitation
33%
Field-induced
33%
Liquid Phase
33%
Zero Field
33%
Continuous Transition
33%
Non-interacting
33%
Zero Temperature
33%
Thermal Conductivity
33%
Disintegration
33%
Interacting Electrons
33%
Quantum number
33%
Correlated Materials
33%
Understanding Others
33%
Collective Excitations
33%
Competing Phases
33%
Electron Correlation
33%
Heavy Fermion Compounds
33%
Landau Fermi Liquid
33%
Inelastic Scattering
33%
Zero Temperature Limit
33%
Non-Fermi Liquid
33%
Chemistry
Quasiparticle
100%
Charge Transfer
100%
Magnetism
100%
Fermi Liquid
100%
Zero-Temperature
66%
Magnetic Field
66%
Antiferromagnetic
33%
Ground State
33%
Quantum Number
33%
Thermal Conductivity
33%
Electron Correlation
33%
Electronic Excitation
33%
Collective Excitation
33%
Inelastic Scattering
33%
electronics
33%
Electrical Conductivity
33%
Non-Fermi Liquid
33%
Physics
Fermi Liquid
100%
Charge Transfer
100%
Magnetism
100%
Quasiparticle
75%
Magnetic Field
50%
Zero-Temperature
50%
Liquid Phase
25%
Quantum Number
25%
Fermion
25%
Thermal Conductivity
25%
Inelastic Scattering
25%
Ground State
25%
Quantum Electronics
25%
Electrical Resistivity
25%