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Predicting Quantum Criticality in Single-Crystalline Ce
2
Ru
3
Ge
5
Mario A. Plata
, J. Streit Smith
, Ryan E. Baumbach
,
André Michael Strydom
, Gregory T. McCandless
, Julia Y. Chan
Physics
Baylor University
University of California at Santa Cruz
Research output
:
Contribution to journal
›
Article
›
peer-review
2
Citations (Scopus)
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Dive into the research topics of 'Predicting Quantum Criticality in Single-Crystalline Ce
2
Ru
3
Ge
5
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Keyphrases
Chemical Pressure
33%
Complex Order Parameter
33%
Electrical Resistivity
33%
Exotic States
33%
F-electrons
33%
Ferromagnetic Materials
33%
Ferromagnetic Ordering
33%
Heat Capacity
33%
Heat Capacity Measurement
33%
Magnetic Susceptibility
33%
Magnetoresistance Measurements
33%
Main Group Elements
33%
Material Design
33%
Non-Fermi Liquid Behavior
33%
Physical Pressure
33%
Polycrystal
33%
Polycrystalline Samples
33%
Property Map
33%
Quantum Critical Behavior
33%
Quantum Critical Point
66%
Quantum Criticality
100%
Quantum State
33%
Resistivity Measurements
33%
Single Crystal
66%
Single-crystalline
100%
Strongly Correlated
33%
Structure Properties
33%
Target Design
33%
Temperature Dependence
33%
Unconventional Superconductivity
33%
Weak Ferromagnetic
33%
Chemistry
Ferromagnetic Material
50%
Ferromagnetic Ordering
50%
Heat Capacity
100%
Magnetic Permeability
50%
Magnetism
50%
Magnetoresistance
50%
Main Group Element
50%
Non-Fermi Liquid
50%
Order Parameter
50%
Polycrystalline Solid
50%
Single Crystalline Solid
100%
Superconductivity
50%
Transition Metal
50%
Material Science
Electrical Resistivity
100%
Fermi Liquid
50%
Ferromagnetic Material
50%
Magnetic Susceptibility
50%
Magnetoresistance
50%
Polycrystal
50%
Single Crystal
100%
Superconductivity
50%
Transition Metal
50%