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1. Investigation of H-mode density limit in mixed protium–deuterium plasmas at JET with ITER-like wall

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

4. Identity of the JET M-mode and the ASDEX Upgrade I-phase phenomena

5. Comparison of ion cyclotron wall conditioning discharges in hydrogen and helium in JET

7. Detection of alpha heating in JET-ILW DT plasmas by a study of the electron temperature response to ICRH modulation

8. Improved Confinement in JET High {beta} Plasmas with an ITER-Like Wall

9. The CXSFIT spectral fitting code: Past, present and future.

10. Progress with applications of three-ion ICRF scenarios for fusion research: A review

11. Time-Resonant Tokamak Plasma Edge Instabilities?

12. Evidence of Electron Heating by Alpha Particles in JET Deuterium-Tritium Plasmas

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

14. Disruption prediction with artificial intelligence techniques in tokamak plasmas

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

16. Power balance analysis at the L-H transition in JET-ILW NBI-heated deuterium plasmas

17. The dependence of confinement on the isotope mass in the core and the edge of AUG and JET-ILW H-mode plasmas

18. Achievement of ion temperatures in excess of 100 million degrees Kelvin in the compact high-field spherical tokamak ST40

19. Isotope effects on intrinsic rotation in hydrogen, deuterium and tritium plasmas

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

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

23. Overview of interpretive modelling of fusion performance in JET DTE2 discharges with TRANSP

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

25. The role of isotope mass and transport for H-mode access in tritium containing plasmas at JET with ITER-like wall

26. L-H transition studies in tritium and deuterium-tritium campaigns at JET with Be wall and W divertor

27. Fundamental ICRF heating of deuterium ions in JET-DTE2.

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

29. Isotope mass scaling and transport comparison between JET Deuterium and Tritium L-mode plasmas.

30. L-H transition studies in tritium and deuterium–tritium campaigns at JET with Be wall and W divertor.

31. Isotope physics of heat and particle transport with tritium in JET-ILW type-I ELMy H-mode plasmas.

35. Tritium Operation of the JET Neutral Beam Systems and Tritium NBI Power Calculations

36. Power balance analysis at the L-H transition in JET-ILW NBI-heated deuterium plasmas

37. Disruption prediction with artificial intelligence techniques in tokamak plasmas

38. The dependence of confinement on the isotope mass in the core and the edge of AUG and JET-ILW H-mode plasmas

39. Recent progress in L-H transition studies at JET:Tritium, helium, hydrogen and deuterium

40. Overview of JET results for optimising ITER operation

41. Power balance analysis at the L-H transition in JET-ILW NBI-heated deuterium plasmas

42. Recent progress in L–H transition studies at JET: tritium, helium, hydrogen and deuterium

44. Overview of JET results for optimising ITER operation

45. Role of NBI fuelling in contributing to density peaking between the ICRH and NBI identity plasmas on JET

46. Isotope removal experiment in JET-ILW in view of T-removal after the 2nd DT campaign at JET

47. Isotope Effects on Intrinsic Toroidal Rotation and Rotation Reversals

48. Progress with applications of three-ion ICRF scenarios for fusion research: A review

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

50. Improved neutron activation dosimetry for fusion

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