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Spin susceptibility in underdoped
H. Fong
, P. Bourges
, Y. Sidis
, L. Regnault
, J. Bossy
, A. Ivanov
, D. Milius
, Ilhan A. Aksay
, B. Keimer
Chemical & Biological Engineering
Civil & Environmental Engineering
Mechanical & Aerospace Engineering
High Meadows Environmental Institute
Princeton Materials Institute
Research output
:
Contribution to journal
›
Article
›
peer-review
244
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Scopus citations
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Keyphrases
Bilayer System
33%
Compound Formula
33%
Doped Compounds
33%
Doping Level
33%
Dynamical Spin Susceptibility
33%
Excitation Energy
33%
High-temperature Superconductors
66%
Low Energy
33%
Magnetic Resonance
33%
Magnetic Spectrum
33%
Matrix Elements
33%
Neutron Scattering
33%
Polarization Analysis
33%
Pseudogap
33%
Resonance Peak
66%
Sign Changes
33%
Single Crystal
33%
Spectral Weight
33%
Spin Excitations
66%
Spin State
33%
Spin Susceptibility
100%
Superconducting State
33%
Superconducting Transition Temperature
33%
Symmetry Operations
33%
Thermodynamics
33%
Transitional Matrix
33%
Underdoped
100%
Unpolarized
33%
Chemistry
Doped Compound
25%
Magnetic Resonance
25%
Neutron Scattering
25%
Single Crystalline Solid
25%
Spin State
25%
Spin Susceptibility
100%
Superconductor
50%
Thermodynamics
25%
Physics
High Temperature Superconductors
100%
Magnetic Resonance
50%
Neutron Scattering
50%
Single Crystal
50%
Thermodynamics
50%
Material Science
High Temperature Superconductors
100%
Single Crystal
50%