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933 results on '"Van Eester D"'

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1. A model of non-Maxwellian electron distribution function for the analysis of ECE data in JET discharges

2. Investigation of Te measurements discrepancies between ECE and Thomson diagnostics in high-performance plasmas in JET

3. ANSYS HFSS as a new numerical tool to study wave propagation inside anisotropic magnetized plasmas in the Ion Cylotron Range of Frequencies

4. Sawtooth pacing with on-axis ICRH modulation in JET-ILW

5. ICRH physics and technology achievements in JET-ILW

6. Synergetic heating of D-NBI ions in the vicinity of the mode conversion layer in H-D plasmas in JET with the ITER like wall.

10. New plasma regimes with small ELMs and high confinement at the Joint European Torus

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

15. Impact of interaction between RF waves and fast NBI ions on the fusion performance in JET DTE2 campaign

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

17. Analysis of fusion alphas interaction with RF waves in D-T plasma at JET

18. Observation of alpha-particles in recent D-T experiments on JET

19. A new ICRF scenario for bulk ion heating in D-T plasmas: How to utilize intrinsic impurities in fusion devices in our favour

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

22. On the Challenge of Plasma Heating with the JET Metallic Wall

23. Characterisation of local ICRF heat loads on the JET ILW

24. Effect of impurities on the transition between minority ion and mode conversion ICRH heating in (3He)-H tokamak plasmas

28. Analysis of the role of the ion polarization current on the onset of pre-disruptive magnetic islands in JET.

29. Neon seeding effects on two high-performance baseline plasmas on the Joint European Torus

32. High Te discrepancies between ECE and Thomson diagnostics in high-performance JET discharges.

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

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

35. Overview of the TCV tokamak experimental programme

36. JET D-T scenario with optimized non-thermal fusion

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

38. Modelling performed for predictions of fusion power in JET DTE2 : overview and lessons learnt

39. Validation of D-T fusion power prediction capability against 2021 JET D-T experiments

40. Modelling performed for predictions of fusion power in JET DTE2: overview and lessons learnt

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

42. JET D-T scenario with optimized non-thermal fusion

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

44. Parameter dependencies of the separatrix density in low triangularity L-mode and H-mode JET-ILW plasmas

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

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

47. Parameter dependencies of the separatrix density in low triangularity L-mode and H-mode JET-ILW plasmas

49. Isotope exchange by Ion Cyclotron Wall Conditioning on JET

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