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Structural relaxation in a system of dumbbell molecules
S. H. Chong,
W. Götze
TUM Emeriti of Excellence
Technical University of Munich
Research output
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Contribution to journal
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Article
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peer-review
1
Scopus citations
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Keyphrases
Structural Relaxation
100%
Diffusion Process
100%
Mean Square Displacement
100%
Density Fluctuations
100%
Dumbbell
100%
Law
50%
Glass Transition
50%
Hard Spheres
50%
Superposition Principle
50%
Relaxation Function
50%
Coupled Mode Theory
50%
Glassy Dynamics
50%
Hard-sphere System
50%
Site Density
50%
High Elongation
50%
Dipole Relaxation
50%
Rotation-translation Coupling
50%
Interaction Sites
50%
Dipole Reorientation
50%
Mathematics
time interval τ
100%
Hard Spheres
100%
Diffusion Process
100%
Superposition Principle
50%
Correlator
50%
Engineering
Diffusion Process
100%
Density Fluctuation
100%
Correlator
50%
Superposition Principle
50%
Material Science
Density
100%
Structural Relaxation
100%
Glass Transition
50%
Chemistry
Relaxation
100%
Structural Relaxation
100%
Glass Transition
33%