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Optimal, globally constraint-preserving, \(\mathrm{DG(TD)}^2\) schemes for computational electrodynamics based on two-derivative Runge-Kutta timestepping and multidimensional generalized Riemann problem solvers -- a von Neumann stability analysis - MaRDI portal

Optimal, globally constraint-preserving, \(\mathrm{DG(TD)}^2\) schemes for computational electrodynamics based on two-derivative Runge-Kutta timestepping and multidimensional generalized Riemann problem solvers -- a von Neumann stability analysis (Q2123326)

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Optimal, globally constraint-preserving, \(\mathrm{DG(TD)}^2\) schemes for computational electrodynamics based on two-derivative Runge-Kutta timestepping and multidimensional generalized Riemann problem solvers -- a von Neumann stability analysis
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    Optimal, globally constraint-preserving, \(\mathrm{DG(TD)}^2\) schemes for computational electrodynamics based on two-derivative Runge-Kutta timestepping and multidimensional generalized Riemann problem solvers -- a von Neumann stability analysis (English)
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    8 April 2022
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    computational electrodynamics
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    discontinuous Galerkin
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    higher order schemes
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    two-derivative Runge-Kutta
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    multidimensional generalized Riemann problem solver
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    von Neumann stability
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