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1. Overview of ASDEX upgrade results in view of ITER and DEMO

2. Overview of the EUROfusion Tokamak Exploitation programme in support of ITER and DEMO

3. Overview of T and D–T results in JET with ITER-like wall

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

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

6. Negative triangularity scenarios: from TCV and AUG experiments to DTT predictions

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

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

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

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

11. Experimental evidence of magnetic flux pumping in ASDEX upgrade

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

13. Predictive JET current ramp-up modelling using QuaLiKiz-neural-network

14. Overview of initial negative triangularity plasma studies on the ASDEX Upgrade tokamak

15. Peripheral temperature gradient screening of high-Z impurities in optimised ‘hybrid’ scenario H-mode plasmas in JET-ILW

16. The role of the current profile in the improved H-mode scenario in ASDEX Upgrade

17. Chapter 6: Steady state operation

18. Transport studies in improved H-mode at ASDEX Upgrade

19. ITER operation beyond its baseline scenario

20. 100% noninductive operation at high beta using off-axis ECCD in DIII-D

21. Integrated modelling of the current profile in steady-state and hybrid ITER scenarios

22. Overview of ASDEX Upgrade results—development of integrated operating scenarios for ITER

23. Understanding of the density profile shape, electron heat transport and internal transport barriers observed in ASDEX Upgrade

24. The improved H-mode at ASDEX Upgrade: a candidate for an ITER hybrid scenario

25. Integrated exhaust scenarios with actively controlled ELMs

26. Advanced tokamak research in DIII-D

27. Numerical investigations of axisymmetric equilibria with current holes

28. Recent ECRH results in ASDEX Upgrade

29. Transport in high normalized beta discharges on ASDEX Upgrade

30. Ion cyclotron resonance heating for tungsten control in various JET H-mode scenarios

31. Measurement of poloidal flow, radial electric field andE Bshearing rates at ASDEX Upgrade

32. Overview of ASDEX Upgrade results

33. Performance, heating and current drive scenarios of ASDEX Upgrade advanced tokamak discharges

34. MHD phenomena in advanced scenarios on ASDEX Upgrade and the influence of localized electron heating and current drive

35. Turbulence reduction in internal transport barriers on ASDEX Upgrade

36. Pellet fuelling into radiative improved confinement discharges in TEXTOR-94

37. Overview of radiative improved mode results on TEXTOR-94

38. Studies on basic phenomena during the pellet injection into high-temperature plasmas

39. Experimental studies of ITER demonstration discharges

40. Physics and engineering results obtained with the ion cyclotron range of frequencies ITER-like antenna on JET

41. Confinement and transport properties during current ramps in the ASDEX Upgrade tokamak

42. Transport physics of ASDEX Upgrade current ramps: experiment and theory

43. Neoclassical tearing mode control using electron cyclotron current drive and magnetic island evolution in JT-60U

44. JET confinement studies and their scaling to high βN, ITER scenarios

45. Assessment of the baseline scenario at q 95 ~ 3 for ITER.

46. Modelling of JET hybrid plasmas with emphasis on performance of combined ICRF and NBI heating.

47. Analysis of plasma termination in the JET hybrid scenario.

48. Parameter dependences of the separatrix density in nitrogen seeded ASDEX Upgrade H-mode discharges.

50. Impact of divertor geometry on H-mode confinement in the JET metallic wall.

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