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The 6th Fusion HPC Workshop, which took place from February 24 to February 25, 2026, covered all computer applications using High Performance Supercomputing (HPC) in the field of fusion research. ➡️ To learn more visit: https://hpcfusion.bsc.es/ 00:00:37 Hiroyuki Yamaguchi: Design activity of a flexible stellarator in National Institute for Fusion Science. 00:44:48 Caoxiang Zhu: Optimizing Stellarators with Hidden Symmetry. 01:17:30 Efstratios Koukoutsis: Quantum Simulation of Transient Scattering: From Dielectrics to Plasmas. 01:38:44 Óscar Amaro: Extracting Plasma Dispersion Relations using a Quantum Algorithm. 01:57:34 Henrique Bergallo Rocha: New Developments in MFEM-Enabled MOOSE Simulations. 02:19:46 Daniel Ward: Progress towards a scalable liquid-metal MHD solver in MFEM for fusion breeding blankets. 02:37:59: Pranav Puthan: Analysis and Validation of Liquid-Metal Magnetohydrodynamic (MHD) Turbulence for Multiphysics Fusion Applications. 02:58:36 Federico Ledda: Atomistic simulation framework for radiation damage assessment in YBCO. 03:23:28 Pedro J. Delgado: Development of a Fe-C fusion ready potential within the NEP approach. 03:44:32 Alberto Fraile: High velocity impacts on plasma facing materials. Vacancies, He, He bubbles, and polycrystalline targets. 04:01:56 Cristian Diego Denton Zanello: Molecular dynamics study of He bubbles in FeCr. 04:23:40 Misun Min: Exascale MHD Simulations for Liquid Metal Fusion Blankets. 05:04:02 Tyler Brandes: Modelling MHD Pressure Drop in Pumped Liquid Metal Fusion Blankets. 05:39:14 Jesús José Domínguez-Palacios Durán: Extended-MHD modeling of a Wide Pedestal Quiescent H-mode DIII-D plasma including multispecies collisional effects. 06:11:05 Alvaro Martinez Pechero: OXFORD-UMAT, the Crystal Plasticity code used to address STEP materials. 06:45:17 Pablo Rodriguez-Fernandez: On the use of surrogate-based optimization methods to accelerate transport modeling in magnetic confinement fusion devices 07:39:13 Closing.