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1. Mitigation of Alfvénic activity by 3D magnetic perturbations on NSTX

2. Study of chirping toroidicity-induced Alfvén eigenmodes in the National Spherical Torus Experiment

3. Modeling the response of a fast ion loss detector using orbit tracing techniques in a neutral beam prompt-loss study on the DIII-D tokamaka)

4. Alfvén cascade modes at high Β in the National Spherical Torus Experiment

5. Overview of recent physics results from the National Spherical Torus Experiment (NSTX)

6. Chapter 5: Physics of energetic ions

7. Effect of plasma shaping on performance in the National Spherical Torus Experimenta)

8. Collective fast ion instability-induced losses in National Spherical Tokamak Experimenta)

9. Progress towards steady state on NSTX

10. Progress towards high-performance, steady-state spherical torus

11. The national spherical torus experiment (NSTX) research programme and progress towards high beta, long pulse operating scenarios

12. Thin foil Faraday collectors as a radiation hard fast lost-ion diagnostic

13. TFTR DT experiments

14. Deuterium–tritium plasmas in novel regimes in the Tokamak Fusion Test Reactor

15. Alpha-particle physics in the tokamak fusion test reactor DT experiment

16. Physics of high performance deuterium-tritium plasmas in TFTR

18. Search for alpha driven BAEs in TFTR

19. Alpha particle losses from Tokamak Fusion Test Reactor deuterium–tritium plasmas

20. Overview of DT results from TFTR

21. Recent D-T results on TFTR

22. Plasma-surface interactions in TFTR DT experiments

23. Deuterium and tritium experiments on TFTR

24. Confinement and heating of a deuterium-tritium plasma

25. Fusion power production from TFTR plasmas fueled with deuterium and tritium

26. Preparations for deuterium–tritium experiments on the Tokamak Fusion Test Reactor*

27. OVERVIEW OF RECENT TFTR RESULTS

28. Initial results from the scoop limiter experiment in PDX

30. Studies of fast-ion transport induced by energetic particle modes using fast-particle diagnostics with high time resolution in CHS

31. Physics of high performance deuterium-tritium plasmas in TFTR

32. ICRF results in D-T plasmas in JET and TFTR and implications for ITER

33. OVERVIEW OF RECENT TFTR RESULTS

34. Alpha-particle physics in the tokamak fusion test reactor DT experiment

35. OVERVIEW OF RECENT TFTR RESULTS

36. Energetic particle physics issues for ITER

37. Observation of alpha particle driven Toroidal Alfven Eigenmodes in TFTR DT plasmas

39. CHARGED FUSION PRODUCT AND FAST ION LOSS IN TFTR

40. DEUTERIUM-TRITIUM EXPERIMENTS ON THE TOKAMAK FUSION TEST REACTOR

41. ICRF HEATING ON TFTR - EFFECT ON STABILITY AND PERFORMANCE

42. Suppression of Alfvén Modes on the National Spherical Torus Experiment Upgrade with Outboard Beam Injection.

43. Faraday-cup-type lost fast ion detector on Heliotron J.

44. Plasma diagnostics in spherical tokamaks with silicon charged-particle detectors.

45. Investigating fusion plasma instabilities in the Mega Amp Spherical Tokamak using mega electron volt proton emissions (invited).

46. Energetic ion loss detector on the Alcator C-Mod tokamak.

47. Concept of a charged fusion product diagnostic for NSTX.

48. Observation of alpha particle loss from JET plasmas during ion cyclotron resonance frequency heating using a thin foil Faraday cup detector array.

49. Scintillator based energetic ion loss diagnostic for the National Spherical Torus Experiment.

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