Asymptotic-preserving gyrokinetic implicit particle-orbit integrator for arbitrary electromagnetic fields
From MaRDI portal
Publication:6572162
DOI10.1016/J.JCP.2024.113136MaRDI QIDQ6572162
Publication date: 15 July 2024
Published in: Journal of Computational Physics (Search for Journal in Brave)
Numerical methods for partial differential equations, initial value and time-dependent initial-boundary value problems (65Mxx) Partial differential equations of mathematical physics and other areas of application (35Qxx) Ionized gas flow in electromagnetic fields; plasmic flow (76Xxx)
Cites Work
- A fast, high-order solver for the Grad-Shafranov equation
- Fluid preconditioning for Newton-Krylov-based, fully implicit, electrostatic particle-in-cell simulations
- An energy- and charge-conserving, nonlinearly implicit, electromagnetic 1D-3V Vlasov-Darwin particle-in-cell algorithm
- An energy- and charge-conserving, implicit, electrostatic particle-in-cell algorithm
- Numerical error in electron orbits with large \(\omega{} _{ce}\Delta{} t\)
- Exact energy-momentum conserving algorithms and symplectic schemes for nonlinear dynamics
- Accurate numerical solution of charged particle motion in a magnetic field
- Exactly energy conserving semi-implicit particle in cell formulation
- Numerical methods for the two-dimensional Vlasov-Poisson equation in the finite Larmor radius approximation regime
- A semi-implicit, energy- and charge-conserving particle-in-cell algorithm for the relativistic Vlasov-Maxwell equations
- An energy-conserving and asymptotic-preserving charged-particle orbit implicit time integrator for arbitrary electromagnetic fields
- A conservative implicit-PIC scheme for the hybrid kinetic-ion fluid-electron plasma model on curvilinear meshes
- Fast nonlinear iterative solver for an implicit, energy-conserving, asymptotic-preserving charged-particle orbit integrator
- Large-stepsize integrators for charged-particle dynamics over multiple time scales
- A fully implicit, conservative, non-linear, electromagnetic hybrid particle-ion/fluid-electron algorithm
- A multi-dimensional, energy- and charge-conserving, nonlinearly implicit, electromagnetic Vlasov-Darwin particle-in-cell algorithm
- An implicit \(\delta\) particle-in-cell method with sub-cycling and orbit averaging for Lorentz ions
- A charge- and energy-conserving implicit, electrostatic particle-in-cell algorithm on mapped computational meshes
- Asymptotically preserving particle methods for strongly magnetized plasmas in a torus
- Asymptotically stable particle-in-cell methods for the Vlasov-Poisson system with a strong external magnetic field
- Development of a consistent and stable fully implicit moment method for Vlasov-Ampère particle in cell (PIC) system
- Foundations of nonlinear gyrokinetic theory
- Nonlinear gyrokinetic equations
- Gyrokinetic approach in particle simulation
- Nonlinear gyrokinetic theory for finite-beta plasmas
- Uniformly Accurate Methods for Three Dimensional Vlasov Equations under Strong Magnetic Field with Varying Direction
- Uniformly accurate methods for Vlasov equations with non-homogeneous strong magnetic field
- Asymptotically Preserving Particle-in-Cell Methods for Inhomogeneous Strongly Magnetized Plasmas
- Exact charge conservation scheme for particle-in-cell simulation with an arbitrary form-factor
- A pseudospectral implicit particle-in-cell method with exact energy and charge conservation
This page was built for publication: Asymptotic-preserving gyrokinetic implicit particle-orbit integrator for arbitrary electromagnetic fields
Report a bug (only for logged in users!)Click here to report a bug for this page (MaRDI item Q6572162)