Mathias Hoppe Alumni
PhD student
Contact details

Email: mhop at kth.se

ORCID: 0000-0003-3994-8977

Recent publications
  1. R. Sweeney et al., ARC Disruption Physics and Strategy.Journal of Plasma Physics (), (2026)
  2. O Vallhagen et al., Simulation of shattered pellet injections with plasmoid drifts in ASDEX Upgrade and ITER. Plasma Physics and Controlled Fusion 67 (10), 105034 (2025)
  3. I. Ekmark et al., Runaway electron generation in disruptions mitigated by deuterium and noble gas injection in SPARC. Journal of Plasma Physics 91 (3), E82 (2025)
  4. O. Vallhagen et al., Reduced modelling of scrape-off losses of runaway electrons during tokamak disruptions. Journal of Plasma Physics 91 (3), E78 (2025)
  5. Peter Halldestam et al., Reduced kinetic modelling of shattered pellet injection in ASDEX Upgrade. Journal of Plasma Physics (), (2025)
Note: This researcher is no longer affiliated with Chalmers University of Technology.
Author of the DREAM runaway electron simulation framework (<https://github.com/chalmersplasmatheory/DREAM>) and the SOFT synthetic diagnostic framework: <https://github.com/hoppe93/SOFT2>. Working since April 2023 as assistant professor in Fusion Plasma Physics at the KTH Royal Institute of Technology, Stockholm, Sweden. ##### Selected publications 1. *SOFT: a synthetic synchrotron diagnostic*, in [Nuclear Fusion **58** (2), 026032](https://doi.org/10.1088/1741-4326/aa9abb) (2018) ([arXiv:1709.00674](https://arxiv.org/abs/1709.00674)) 2. Licentiate thesis (PDF)
Recent publications
  1. R. Sweeney et al., ARC Disruption Physics and Strategy.Journal of Plasma Physics (), (2026)
  2. O Vallhagen et al., Simulation of shattered pellet injections with plasmoid drifts in ASDEX Upgrade and ITER. Plasma Physics and Controlled Fusion 67 (10), 105034 (2025)
  3. I. Ekmark et al., Runaway electron generation in disruptions mitigated by deuterium and noble gas injection in SPARC. Journal of Plasma Physics 91 (3), E82 (2025)
  4. O. Vallhagen et al., Reduced modelling of scrape-off losses of runaway electrons during tokamak disruptions. Journal of Plasma Physics 91 (3), E78 (2025)
  5. Peter Halldestam et al., Reduced kinetic modelling of shattered pellet injection in ASDEX Upgrade. Journal of Plasma Physics (), (2025)
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