Fast Kinetic Monte Carlo Simulations Using Hash Table Based Caching with Applications to Nanowire Growth and Sintering
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Publication:5250329
DOI10.1137/130926407zbMath1327.82077OpenAlexW2013173469MaRDI QIDQ5250329
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Publication date: 19 May 2015
Published in: Multiscale Modeling & Simulation (Search for Journal in Brave)
Full work available at URL: https://semanticscholar.org/paper/63ba382d5ddc0ca836c377c3d83b522a00be7fec
nanostructures and nanoparticlesapplications to physicsnumerical methods (Monte Carlo, series resummation, etc.)
Statistical mechanics of nanostructures and nanoparticles (82D80) Applications to the sciences (65Z99)
Cites Work
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- A Kinetic Monte Carlo method for the simulation of heteroepitaxial growth
- Diffusion generated motion for grain growth in two and three dimensions
- An energy localization principle and its application to fast kinetic Monte Carlo simulation of heteroepitaxial growth
- Numerical simulation of solid state sintering
- Kinetic Monte Carlo simulation of strained heteroepitaxial growth with intermixing
- Efficient kinetic Monte Carlo simulation
- Large-scale simulation of normal grain growth via diffusion-generated motion
- Lattice Gas Models and Kinetic Monte Carlo Simulations of Epitaxial Growth
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