DOE OSTI · 2574844
An implementation of a high-order generalized finite difference method for solving the time-harmonic cold plasma wave equation in toroidal geometry
Abstract
A high-order physics-informed meshless finite difference numerical technique is introduced for solving the time-harmonic cold plasma wave equation in toroidal geometries, presenting a novel application of the generalized finite difference (GFD) method to plasma wave simulations. The algorithm employs an irregular distribution of computational points, with local point density informed by the shortest wavelength derived from the cold plasma dispersion relation. Numerical stability and robustness are addressed using regularization techniques. The algorithm, implemented for two spatial dimensions, solves for the wave electric field and is demonstrated to achieve convergence rates of $\mathcal{O}$($\mathcal{h}$ $\mathcal{P}$ ). Verification tests reproduce plane wave solutions, and example simulations of ion cyclotron resonance heating and electron cyclotron resonance heating demonstrate its capability, approaching realistic tokamak plasma scenarios. This work contributes to laying a foundation for the GFD method to be used in more sophisticated, optimized, and physically realistic full-wave simulations in time-harmonic plasma wave research.
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Spencer, J. Andrew [FAR-TECH, Inc., San Diego, CA (United States); Utah State University, Logan, UT (United States)] (ORCID:0000000294896279), Svidzinski, Vladimir A. [FAR-TECH, Inc., San Diego, CA (United States); Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)] (ORCID:0009000986145027), Kim, J. S. [FAR-TECH, Inc., San Diego, CA (United States)] (ORCID:0000000204850913), Zhao, L. [FAR-TECH, Inc., San Diego, CA (United States)] (ORCID:0000000255691633), Galkin, S. A. [FAR-TECH, Inc., San Diego, CA (United States); TAE Technologies Inc, Foothill Ranch, CA (United States)] (ORCID:0000000216707364). 2025-06-04. An implementation of a high-order generalized finite difference method for solving the time-harmonic cold plasma wave equation in toroidal geometry. https://doi.org/10.1063/5.0255884
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