In multiscale modeling of heterogeneous catalytic processes, one crucial point is the solution of a Markovian master equation describing the stochastic reaction kinetics. Usually, this is too high-dimensional to be solved with standard numerical techniques and one has to rely on sampling approaches based on the kinetic Monte Carlo method. In this study we break the curse of dimensionality for the direct solution of the Markovian master equation by exploiting the Tensor Train Format for this purpose. The performance of the approach is demonstrated on a first principles based, reduced model for the CO oxidation on the RuO2(110) surface. We investigate the complexity for increasing system size and for various reaction conditions. The advantag...
We present a numerical framework to integrate first-principles kinetic Monte Carlo (1p-kMC) based mi...
Lattice kinetic Monte Carlo simulations have become a vital tool for predictive quality atomistic un...
<div><p>The Chemical Master Equation (CME) is a cornerstone of stochastic analysis and simulation of...
A first-principles based multiscale modeling approach to heterogeneous catalysis is presented, that ...
We present a first-principles based multiscale modeling approach to heterogeneous catalysis that int...
We describe a first-principles statistical mechanics approach enabling us to simulate the steady-sta...
We present a first-principles based multiscale modeling approach to heterogeneous catalysis that int...
We describe a first-principles statistical mechanics approach enabling us to simulate the steady-sta...
We present a first-principles based multiscale modeling approach to heterogeneous catalysis that int...
We have developed a method to couple kinetic Monte Carlo simulations of surface reactions at a molec...
Microkinetic modeling of surface chemical reactions still relies heavily on the mean-field based rat...
First-principles kinetic Monte Carlo (1p-kMC) simulations for CO oxidation on two RuO2 facets, RuO2(...
We develop a hierarchy of approximations to the master equation for systems that exhibit translation...
Ein Multiskalen-Modellierungs-Ansatz basierend auf ab-initio Berechnungen für die heterogene Katalys...
Kinetic Monte Carlo (kMC) simulations of the CO oxidation over RuO<sub>2</sub>(110) have been perfor...
We present a numerical framework to integrate first-principles kinetic Monte Carlo (1p-kMC) based mi...
Lattice kinetic Monte Carlo simulations have become a vital tool for predictive quality atomistic un...
<div><p>The Chemical Master Equation (CME) is a cornerstone of stochastic analysis and simulation of...
A first-principles based multiscale modeling approach to heterogeneous catalysis is presented, that ...
We present a first-principles based multiscale modeling approach to heterogeneous catalysis that int...
We describe a first-principles statistical mechanics approach enabling us to simulate the steady-sta...
We present a first-principles based multiscale modeling approach to heterogeneous catalysis that int...
We describe a first-principles statistical mechanics approach enabling us to simulate the steady-sta...
We present a first-principles based multiscale modeling approach to heterogeneous catalysis that int...
We have developed a method to couple kinetic Monte Carlo simulations of surface reactions at a molec...
Microkinetic modeling of surface chemical reactions still relies heavily on the mean-field based rat...
First-principles kinetic Monte Carlo (1p-kMC) simulations for CO oxidation on two RuO2 facets, RuO2(...
We develop a hierarchy of approximations to the master equation for systems that exhibit translation...
Ein Multiskalen-Modellierungs-Ansatz basierend auf ab-initio Berechnungen für die heterogene Katalys...
Kinetic Monte Carlo (kMC) simulations of the CO oxidation over RuO<sub>2</sub>(110) have been perfor...
We present a numerical framework to integrate first-principles kinetic Monte Carlo (1p-kMC) based mi...
Lattice kinetic Monte Carlo simulations have become a vital tool for predictive quality atomistic un...
<div><p>The Chemical Master Equation (CME) is a cornerstone of stochastic analysis and simulation of...