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1. Expulsion of runaway electrons using ECRH in the TCV tokamak

2. Changeover between helium and hydrogen fueled plasmas in JET and WEST

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

4. The JOREK non-linear extended MHD code and applications to large-scale instabilities and their control in magnetically confined fusion plasmas

6. Benign termination of runaway electron beams on ASDEX Upgrade and TCV

8. Benign termination of runaway electron beams on ASDEX Upgrade and TCV

9. Dynamics of JET runaway electron beams in D2-rich shattered pellet injection mitigation experiments

10. Implementation of low temperature spectrometers for the JET high resolution Thomson scattering diagnostic for disruption plasma measurements.

12. The effect of ITER-like wall on runaway electron generation in JET

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

17. Disruption prediction with artificial intelligence techniques in tokamak plasmas

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

19. The JET hybrid scenario in Deuterium, Tritium and Deuterium-Tritium

20. Experiments in high-performance JET plasmas in preparation of second harmonic ICRF heating of tritium in ITER

21. Experiments in high-performance JET plasmas in preparation of second harmonic ICRF heating of tritium in ITER

23. Trends in runaway electron plateau partial recombination by massive H2 or D2 injection in DIII-D and JET and first extrapolations to ITER and SPARC

26. Disruptions in ITER and strategies for their control and mitigation

27. Runaway beam studies during disruptions at JET-ILW

29. Disruption prediction with artificial intelligence techniques in tokamak plasmas

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

31. Cherenkov probes and runaway electrons diagnostics

32. Analysis of RE beams in COMPASS and JET using betatron equilibrium and radiation diagnostics

33. MeV range bremsstrahlung measurements of the runaway electron distribution function in disruption mitigation experiments at the ASDEX upgrade and JET tokamaks

36. Overview of JET results for optimising ITER operation

37. Physics of runaway electrons with shattered pellet injection at JET

38. Overview of JET results for optimising ITER operation

39. Operating a full tungsten actively cooled tokamak: overview of WEST first phase of operation

40. RF power as key contributor to high performance "baseline" scenario experiments in JET DD and DT plasmas in preparation for ITER

41. ICRH operations and experiments during the JET-ILW tritium and DTE2 campaigns

44. Physics of runaway electrons with shattered pellet injection at JET

45. Shattered pellet injection experiments at JET in support of the ITER disruption mitigation system design

46. Improved neutron activation dosimetry for fusion

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

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

49. Analysis of the outer divertor hot spot activity in the protection video camera recordings at JET

50. A locked mode indicator for disruption prediction on JET and ASDEX upgrade

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