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Ir 5d-band derived superconductivity in LaIr
3
A. Bhattacharyya
,
D. T. Adroja
, P. K. Biswas
, Y. J. Sato
, M. R. Lees
, D. Aoki
, A. D. Hillier
Physics
Ramakrishna Mission Vivekananda University
STFC Rutherford Appleton Laboratory
Tohoku University
University of Warwick
Research output
:
Contribution to journal
›
Article
›
peer-review
10
Citations (Scopus)
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3
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Keyphrases
Superconductivity
100%
Heat Capacity
100%
Transverse Field
100%
Bardeen-cooper-schrieffer
66%
Zero Field
66%
Susceptibility Assessment
33%
Weak Coupling
33%
Rhombohedral
33%
Superconducting Properties
33%
Resistivity
33%
Mass Transfer Enhancement
33%
Muon Spin Relaxation
33%
Magnetic Penetration Depth
33%
Carrier Effective Mass
33%
Muon Spin Rotation
33%
Carrier Density
33%
Superconducting State
33%
Enhancement Factor
33%
Time-reversal Symmetry
33%
Superconducting Transition
33%
Spontaneous Magnetic Field
33%
S-wave Superconductivity
33%
Weak Coupling Limit
33%
Resistivity Measurements
33%
Physics
Superconductivity
100%
Specific Heat
100%
Muon
33%
Spin Relaxation
33%
Magnetic Field
33%
Material Science
Superconductivity
100%
Electrical Resistivity
66%
Spin Relaxation
33%
Carrier Concentration
33%
Earth and Planetary Sciences
Superconductivity
100%
Specific Heat
100%
Muon
33%