Stability analysis and time-step limits for a Monte Carlo Compton-scattering method
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Publication:969442
DOI10.1016/j.jcp.2010.01.022zbMath1192.78019OpenAlexW2093273837MaRDI QIDQ969442
Jeffery D. Densmore, Robert B. Lowrie, James S. Warsa
Publication date: 7 May 2010
Published in: Journal of Computational Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.jcp.2010.01.022
Monte Carlo methods (65C05) Diffraction, scattering (78A45) Stochastic methods (Fokker-Planck, Langevin, etc.) applied to problems in time-dependent statistical mechanics (82C31) Radiative transfer in astronomy and astrophysics (85A25)
Related Items (2)
Four Decades of Implicit Monte Carlo ⋮ Stability analysis and time-step limits for a Monte Carlo Compton-scattering method
Cites Work
- Stability analysis of implicit time discretizations for the Compton-scattering Fokker-Planck equation
- Stability analysis and time-step limits for a Monte Carlo Compton-scattering method
- An implicit Monte Carlo scheme for calculating time and frequency dependent nonlinear radiation transport
- Verification (Mostly) for High Energy Density Radiation Transport: Five Case Studies
- Solution of the Nonlinear Radiative Transfer Equations by a Fully Implicit Matrix Monte Carlo Method Coupled with the Rosseland Diffusion Equation via Domain Decomposition
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