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1. Modeling the complete prevention of disruption-generated runaway electron beam formation with a passive 3D coil in SPARC

2. DREAM: a fluid-kinetic framework for tokamak disruption runaway electron simulations

3. Validity of models for Dreicer generation of runaway electrons in dynamic scenarios

4. Modelling of runaway electron dynamics during argon-induced disruptions in ASDEX Upgrade and JET

5. Effects of magnetic perturbations and radiation on the runaway avalanche

6. Spatiotemporal analysis of the runaway distribution function from synchrotron images in an ASDEX Upgrade disruption

7. Runaway dynamics in the DT phase of ITER operations in the presence of massive material injection

8. Kinetic modelling of runaway electron generation in argon-induced disruptions in ASDEX Upgrade

9. Runaway electron synchrotron radiation in a vertically translated plasma

10. Evaluation of the Dreicer runaway generation rate in the presence of high-Z impurities using a neural network

11. Effect of plasma elongation on current dynamics during tokamak disruptions

12. Influence of massive material injection on avalanche runaway generation during tokamak disruptions

13. Spatiotemporal evolution of runaway electrons from synchrotron images in Alcator C-Mod

14. Generalized collision operator for fast electrons interacting with partially ionized impurities

15. Measurements of runaway electron synchrotron spectra at high magnetic fields in Alcator C-Mod

16. Interpretation of runaway electron synchrotron and bremsstrahlung images

17. Runaway-electron formation and electron slide-away in an ITER post-disruption scenario

18. NORSE: A solver for the relativistic non-linear Fokker-Planck equation for electrons in a homogeneous plasma

19. Kinetic modelling of runaway electrons in dynamic scenarios

20. Bump formation in the runaway electron tail

21. Radiation reaction induced non-monotonic features in runaway electron distributions

23. Enhanced performance in fusion plasmas through turbulence suppression by megaelectronvolt ions

24. Disruption prediction with artificial intelligence techniques in tokamak plasmas

25. Enhanced performance in fusion plasmas through turbulence suppression by megaelectronvolt ions

26. Overview of the TCV tokamak experimental programme

28. Disruption prediction with artificial intelligence techniques in tokamak plasmas

29. Millimeter-wave beam scattering and induced broadening by plasma turbulence in the TCV tokamak

30. Cherenkov probes and runaway electrons diagnostics

31. Overview of the TCV tokamak experimental programme

32. Overview of JET results for optimising ITER operation

33. Overview of JET results for optimising ITER operation

34. Overview of the TCV tokamak experimental programme

35. Overview of the TCV tokamak experimental programme

36. Dependence on plasma shape and plasma fueling for small edge-localized mode regimes in TCV and ASDEX Upgrade

37. Physics research on the TCV tokamak facility: From conventional to alternative scenarios and beyond

38. Effect of partially ionized high-Z atoms on fast dynamics electron tokamak plasmas

39. Theory and modelling activities in support of the ITER disruption mitigation system

41. Estimate of pre-thermal quench non-thermal electron density profile during Ar pellet shutdowns of low-density target plasmas in DIII-D

43. Theory and Modelling activities in support of the ITER Disruption Mitigation System

44. Theory & Modelling activities in support of the ITER Disruption Mitigation System

45. Runaway electron modelling in the EU-IM framework

47. Kinetic modelling of runaway electron generation in argon-induced disruptions in ASDEX Upgrade

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