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

2. Experimental evidence of magnetic flux pumping in ASDEX upgrade

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

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

5. Momentum-space-resolved measurements using oblique electron cyclotron emission for the validation of the quasi-linear theory of electron cyclotron current drive

6. Dependence on plasma shape and plasma fueling for small edge-localized mode regimes in TCV and ASDEX Upgrade

7. OVERVIEW OF PHYSICS STUDIES ON ASDEX UPGRADE

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

9. Progress in reducing ICRF-specific impurity release in ASDEX upgrade and JET

10. Note: Internal diamagnetic flux measurements on ASDEX Upgrade

11. Motional Stark Effect Spectra Simulations for Wendelstein 7-X

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

13. Quantification of the impact of large and smal-scale instabilities on the fast-ion confinement in ASDEX Upgrade

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

15. Local 3D perturbation experiments for probing the ELM stability

16. ITER operation beyond its baseline scenario

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

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

19. Integrated exhaust scenarios with actively controlled ELMs

20. Numerical investigations of axisymmetric equilibria with current holes

21. Status of and prospects for advanced tokamak regimes from multi-machine comparisons using the 'International Tokamak Physics Activity' database

22. Chapter 13: Current Drive in ASDEX Upgrade

23. Chapter 4: Advanced Tokamak Studies in ASDEX Upgrade

24. Recent ECRH results in ASDEX Upgrade

25. Development of active control systems on ASDEX upgrade in view of ITER discharge scenarios

26. The new ASDEX upgrade real-time control and data acquisition system

27. Transport in high normalized beta discharges on ASDEX Upgrade

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

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

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

31. Turbulence reduction in internal transport barriers on ASDEX Upgrade

32. ECRH experiments in ASDEX upgrade

33. Experimental investigation and validation of neutral beam current drive for ITER through ITPA joint experiments

34. Ion heat transport studies in JET

35. Addendum to papers from Axially Symmetric Divertor Experiment (ASDEX) Upgrade Team, published in Review of Scientific Instruments

36. Improved confinement in JET hybrid discharges

37. ELM triggering by local pellet perturbations in type-I ELMy H-mode plasma at JET

38. Plasma wall interaction and its implication in an all tungsten divertor tokamak

39. Recent Accomplishments and Future Plans of ASDEX Upgrade

40. Experimental studies of ITER demonstration discharges

41. Reaching High Poloidal Beta at Greenwald Density with Internal Transport Barrier Close to Full Noninductive Current Drive

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

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

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

45. Development of an ITER relevant advanced scenario at ASDEX Upgrade

46. Motional stark effect measurements of the local magnetic field in high temperature fusion plasmas

47. Steady state advanced scenarios at ASDEX Upgrade

48. Progress towards steady-state advanced scenarios in ASDEX upgrade

49. Theoretical description of heavy impurity transport and its application to the modelling of tungsten in JET and ASDEX upgrade

50. The effect of a metal wall on confinement in JET and ASDEX Upgrade

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