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1. Experimental validation of the intensity refractometry principle for density measurements at the edge of a tokamak

2. DEMO ion cyclotron heating: status of ITER-type antenna design

5. Status and future development of Heating and Current Drive for the EU DEMO

11. Analysis of high frequency Alfven eigenmodes observed in ASDEX Upgrade plasmas in the presence of RF-accelerated NBI ions

12. Overview of plasma emissions observed in the ion cyclotron frequency range on ASDEX upgrade

13. Designing a multi-channel 47 GHz microwave diagnostic for plasma edge measurements.

14. Analysis of high frequency Alfvén eigenmodes observed in ASDEX Upgrade plasmas in the presence of RF-accelerated NBI ions

16. Progress from ASDEX Upgrade experiments in preparing the physics basis of ITER operation and DEMO scenario development

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

21. ICRF coupling in ASDEX upgrade magnetically perturbed 3D plasmas

22. Overview of physics studies on ASDEX Upgrade

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

24. Development of the ion cyclotron emission diagnostic for the W7-X stellarator

25. Explanation of core ion cyclotron emission from beam-ion heated plasmas in ASDEX Upgrade by the magnetoacoustic cyclotron instability

28. Development of the ion cyclotron emission diagnostic for the W7-X stellarator

31. Explanation of core ion cyclotron emission from beam-ion heated plasmas in ASDEX Upgrade by the magnetoacoustic cyclotron instability

32. High frequency Alfvén eigenmodes detected with ion-cyclotron-emission diagnostics during NBI and ICRF heated plasmas on the ASDEX Upgrade tokamak

33. ICRF coupling in ASDEX upgrade magnetically perturbed 3D plasmas

35. Plasma operation and electric field measurements in IShTAR

36. Impact of ICRF on the scrape-off layer and on plasma wall interactions : From present experiments to fusion reactor

37. Core plasma ion cyclotron emission driven by fusion-born ions

38. Ion Cyclotron Range of Frequency Power: Progress in Operation and Understanding for Experiments with Metallic Walls

39. ION CYCLOTRON RANGE OF FREQUENCY POWER: Progress in Operation and Understanding for Experiments with Metallic Walls

40. Overview of physics studies on ASDEX Upgrade

41. Core plasma ion cyclotron emission driven by fusion-born ions

42. Interpretation of core ion cyclotron emission driven by sub-Alfvénic beam-injected ions via magnetoacoustic cyclotron instability:Paper

44. The prospects of ICRF generators at ASDEX upgrade.

45. Improved operating space of the ICRF system in ASDEX upgrade.

46. New Diagnostics Developments on IShTAR

47. Ion cyclotron emission (ICE) study on the ASDEX Upgrade tokamak

48. Ion Cyclotron Range of Frequency Power Challenges and Solutions

49. Observations of core ion cyclotron emission on ASDEX Upgrade tokamak

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