Bulletin of the American Physical Society
66th Annual Meeting of the APS Division of Plasma Physics
Monday–Friday, October 7–11, 2024; Atlanta, Georgia
Session JP12: Poster Session IV:
Stellarators: W7-X, LHD, HSX, CTH, Others
Low Aspect Ratio Tokamaks
Particle acceleration, beams and relativistic plasmas: Laser-plasma ion acceleration
Plasma-based wakefield accelerators and Analytical and computational techniques
Astrophysical Plasmas
2:00 PM - 5:00 PM
Tuesday, October 8, 2024
Hyatt Regency
Room: Grand Hall West
Abstract: JP12.00047 : Fusion-born alpha-particle confinement in complex 3-D magnetic fields: a comparison of particle orbit solvers
Presenter:
Leopoldo Carbajal
(Type One Energy Group Inc.)
Authors:
Leopoldo Carbajal
(Type One Energy Group Inc.)
Matt Landreman
(University of Maryland)
John C Schmitt
(Type One Energy)
Antoine J Cerfon
(Type One Energy Group - Canada Inc)
John Morrissey
(Type One Energy Group Inc.)
Aaron Bader
(Type One Energy Inc)
Walter Guttenfelder
(Type One Energy)
Chris R Hegna
(Type One Energy Group Inc.)
Collaborations:
Annelise Malkus, Bharat Medasani, Cornwall Lau, Damien Huet, Guillaume Le Bars, Javier Almonacid, John Canik, Katia Camacho Mata, Keely Willis, Luquant Singh, Nick Davila, Noah Mandell, Priyanjana Sinha, Tony Cooper, William Dorland
We perform an analysis of alpha-particles confinement in both axisymmetric tokamak and 3-D stellarator magnetic fields solving the particles orbits using the guiding-center (GC) and full-orbit (FO) models. We find that GC simulations of fusion-born alpha-particles estimate lower particle losses with respect to FO simulations. We also perform a comparison of methods for solving the FO dynamics of alpha-particles while keeping all other parameters fixed, finding that different methods give different estimates of alpha-particle confinement. In each case we compute the conservation of energy and canonical toroidal momentum of particles to guide the selection of the better performing method for solving the FO dynamics of alpha-particles.
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