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Anomalous dispersion and thermal expansion in lightly-doped kta1_xnbxo3
P. M. Gehring
, Henry Chou
, S. M. Shapiro
, J. A. Hriljac
, D. H. Chen
, J. Toulouse
, D. Rytz
, L. A. Boatner
Civil Engineering
Chemistry
Research output
:
Contribution to journal
›
Article
›
peer-review
8
Citations (Scopus)
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Keyphrases
Thermal Expansion
100%
Anomalous Dispersion
100%
TO Mode
100%
Lightly Doped
100%
Concentration-dependent
50%
Temperature Effect
50%
Neutron Diffraction
50%
Single Crystal
50%
Lattice Parameter
50%
Lattice Constant
50%
Diffraction
50%
Minimum Energy
50%
Measurable Change
50%
Mode Coupling
50%
Wave Vector
50%
Inelastic Neutron Scattering Measurement
50%
Characteristic Temperature
50%
Cubic Lattice
50%
Bragg Peak
50%
Zone-centre
50%
Neutron Scattering Methods
50%
KTaO3
50%
Homogeneous Broadening
50%
Tmin
50%
Low-temperature Expansion
50%
Phonon Dispersion
50%
Physics
Temperature Dependence
100%
Neutron Diffraction
100%
Single Crystal
100%
Lattice Parameter
100%
Inelastic Neutron Scattering
100%
Temperature Characteristics
100%
Thermal Expansion
100%
Coupled Mode
100%
Neutron Scattering
100%
Cubic Lattice
100%
Temperature Expansion
100%
Phonon
100%
Chemistry
Lattice Constant
100%
Thermal Expansion
100%
Single Crystalline Solid
50%
Lattice Parameter
50%
Neutron Diffraction
50%
Inelastic Neutron Scattering
50%
Neutron Scattering
50%
Tmin
50%
Phonon
50%