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Quantum criticality in the (Cr
98.4
Al
1.6
)
100-y
Mo
y
alloy system
B. Muchono
,
C. J. Sheppard
,
A. R.E. Prinsloo
Physics
University of Johannesburg
National University of Science and Technology Bulawayo
Research output
:
Contribution to journal
›
Article
›
peer-review
2
Citations (Scopus)
Overview
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Dive into the research topics of 'Quantum criticality in the (Cr
98.4
Al
1.6
)
100-y
Mo
y
alloy system'. Together they form a unique fingerprint.
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Keyphrases
Quantum Critical Point
100%
Alloying System
100%
Quantum Criticality
100%
Sommerfeld
33%
Electronic Specific Heat
33%
Specific Heat Coefficient
33%
Electron-hole Pair
33%
Pair-breaking
33%
Breaking Effect
33%
Electrical Resistivity
33%
Magnetic Contribution
33%
Antiferromagnetic State
16%
Magnetic Susceptibility
16%
Seebeck Coefficient
16%
Spin Density Wave
16%
Hall Coefficient
16%
Quantum Critical Behavior
16%
Critical Exponent
16%
Charge Carrier Density
16%
Anomalous Behavior
16%
P Phase
16%
Temperature Limitation
16%
Behavior-driven
16%
Mo Doping
16%
Wave Modes
16%
Scaling Relationship
16%
Chemistry
Alloy
100%
Electron-Hole Pair
33%
electronics
33%
Antiferromagnetic
16%
Spin Density Wave
16%
Hall Effect Coefficient
16%
Magnetic Permeability
16%
Charge Carrier
16%
Magnetism
16%
Seebeck Effect
16%
Physics
Alloy
100%
Holes (Electron Deficiencies)
33%
Specific Heat
33%
Wave Type
16%
Magnetism
16%
Photoelectric Emission
16%
Magnetic Permeability
16%
Seebeck Effect
16%