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Diffusion-limited reactions on a two-dimensional lattice with binary disorder
Andrea Wolff
*
, Ingo Lohmar
, Joachim Krug
, Yechiel Frank
,
Ofer Biham
*
Corresponding author for this work
Racah Institute of Physics
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Article
›
peer-review
5
Scopus citations
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Keyphrases
Desorption
100%
Two-dimensional Lattice
100%
Diffusion-limited Reaction
100%
Deep Site
100%
Chemical System
50%
Rate Equations
50%
Physical Systems
50%
Thermally Activated Processes
50%
Activation Energy
50%
Spatial Correlation
50%
Kinetic Monte Carlo
50%
Good Accuracy
50%
Temperature Window
50%
Transition Rates
50%
Homogeneous Systems
50%
Shallow Sites
50%
Sublattice
50%
Reaction-diffusion System
50%
Quenched Disorder
50%
Binary Distribution
50%
Continuous Deposition
50%
Well Depth
50%
Mathematics
Dimensional Lattice
100%
Rate Equation
50%
Spatial Correlation
50%
Transition Rate
50%
Homogeneous System
50%
Sublattice
50%
Reaction-Diffusion System
50%
Monte Carlo Method
50%
Chemistry
Desorption
100%
Reaction Activation Energy
50%
Rate Equation
50%
Monte Carlo Method
50%
Reaction-Diffusion System
50%
Quenched Disorder
50%
Physics
Desorption
100%
Activation Energy
50%
Monte Carlo Method
50%
Material Science
Desorption
100%
Activation Energy
50%
Chemical Engineering
Desorption
100%