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Charge density wave and crystalline electric field effects in TmNiC2
Marta Roman
, Maria Fritthum
, Berthold Stöger
,
Devashibhai T. Adroja
, Herwig Michor
Physics
Vienna University of Technology
Gdańsk University of Technology
STFC Rutherford Appleton Laboratory
Research output
:
Contribution to journal
›
Article
›
peer-review
13
Citations (Scopus)
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Keyphrases
Crystalline Electric Field
100%
Charge Density Wave
100%
Phase Transition
33%
Wave Phase
33%
Point Group Symmetry
33%
Charge-density-wave Transition
33%
Thermodynamic Properties
16%
Thermodynamics
16%
Microscopic Study
16%
Eigenvalues
16%
Symmetry Breaking
16%
X-ray
16%
Doublet
16%
Diffraction
16%
Monoclinic
16%
Neutron Scattering
16%
Scattered Data
16%
Crystal Field
16%
Single Crystal
16%
Antiferromagnetic State
16%
Isostructural
16%
Transport Properties
16%
Paramagnetic State
16%
Specific Heat
16%
Heat Susceptibility
16%
Inelastic Neutron Scattering
16%
Magnetic Specific Heat
16%
Magnetic Susceptibility Measurement
16%
Electric Field Modeling
16%
Specific Heat Anomalies
16%
Fermi Surface
16%
Thermal Expansion
16%
Wave Modulation
16%
Changes in Enthalpy
16%
Changes in Entropy
16%
Eigenstates
16%
Second-order Type
16%
F-electrons
16%
Single Crystal X-ray Diffraction (SCXRD)
16%
Specific Entropy
16%
Optical Floating Zone Method
16%
Entropy Contribution
16%
Heat Contribution
16%
Modulation Vector
16%
Electrical Resistivity
16%
Orthorhombic Space Group
16%
Symmetry Change
16%
Exited States
16%
Chemistry
Electric Field Effect
100%
Charge Density Wave
100%
Single Crystalline Solid
25%
Ground State
25%
Point Group
25%
Entropy
25%
Enthalpy
12%
Orthorhombic Space Group
12%
Antiferromagnetic
12%
Monoclinic Space Group
12%
Electric Field
12%
Crystal Field
12%
Magnetic Susceptibility Measurement
12%
Inelastic Neutron Scattering
12%
Superlattice
12%
Neutron Scattering
12%
formation
12%
Thermal Expansion
12%
Transport Property
12%
Amm2
12%
Thermodynamics
12%