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1. Impurity behaviour in JET high-current baseline scenario for Deuterium, Tritium and Deuterium-Tritium plasmas

2. Full radius integrated modelling of ohmic ramp-up at TCV including self consistent density prediction

3. Access and sustainment of ELMy H-mode operation for ITER pre-fusion power operation plasmas using JINTRAC

4. Effects of Kinetic Ballooning Modes on the electron distribution function in the core of high-performance tokamak plasmas

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

6. COREDIV simulations of D and D–T high current–high power Baseline pulses in JET-ITER like wall

7. Recent progress of JT-60SA project toward plasma operation

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

9. Fuelling of deuterium–tritium plasma by peripheral pellets in JET experiments

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

11. Prediction of transport in the JET DTE2 discharges with TGLF and NEO models using the TGYRO transport code

12. Overview of physics results from MAST upgrade towards core-pedestal-exhaust integration

13. Exploring the physics of a high-performance H-mode scenario with small ELMs at low collisionality in JET with Be/W wall

14. Helium plasma operations on ASDEX Upgrade and JET in support of the non-nuclear phases of ITER

15. Alpha particle loss measurements and analysis in JET DT plasmas

16. The core–edge integrated neon-seeded scenario in deuterium–tritium at JET

17. Simulations of the stationary Q = 10 and the exit phase from the flat-top of an ITER 15MA baseline scenario: predictive JINTRAC simulation with a consistent treatment of D and T in the whole plasma

18. Investigation of the dependence of pe,ped on ne,sep in JET H-Mode plasmas using integrated JETTO-MISHKA-FRANTIC simulations

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

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

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

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

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

24. An examination of the Neutral Penetration Model 1/ne,ped scaling for its validity of spatially varying neutral sources

25. The broadening of SOL profiles in JET tritium plasma and its impact on machine operation

26. Integrated modelling of neon impact on JET H-mode core plasmas

27. Global scaling of the heat transport in fusion plasmas

30. Effects of the parallel flow shear on the ITG-driven turbulent transport in tokamak plasmas

31. Beta-induced Alfvén eigenmodes and geodesic acoustic modes in the presence of strong tearing activity during the current ramp-down on JET

32. Experimental study on the role of the target electron temperature as a key parameter linking recycling to plasma performance in JET-ILW

33. Fusion power predictions for β N ≈ 1.8 baseline scenario with 50–50 D–T fuel mix and NBI injection in preparation to D–T operations at JET

34. Plasma physics and control studies planned in JT-60SA for ITER and DEMO operations and risk mitigation

35. Gyrokinetic Stability Analysis of JET Pedestal Top Plasmas with Small-ELMs

36. Prediction of ICRF minority heating schemes for JET D–T experiments

37. JINTRAC integrated simulations of ITER scenarios including fuelling and divertor power flux control for H, He and DT plasmas

38. Multiple-isotope pellet cycles captured by turbulent transport modelling in the JET tokamak

39. Statistical assessment of ELM triggering by pellets on JET

40. Experimental validation of an integrated modelling approach to neutron emission studies at JET

41. H-mode plasmas in the pre-fusion power operation 1 phase of the ITER research plan

42. Onset of tearing modes in plasma termination on JET: the role of temperature hollowing and edge cooling

43. Maximising D − T fusion power by optimising the plasma composition and beam choice in JET

44. Evaluation of fuelling requirements for core density and divertor heat load control in non-stationary phases of the ITER DT 15 MA baseline scenario

45. Non-linear magnetohydrodynamic simulations of pellet triggered edge-localized modes in JET

46. Predictive multi-channel flux-driven modelling to optimise ICRH tungsten control and fusion performance in JET

47. The impact of fuelling and W radiation on the performance of high-power, ITER-baseline scenario plasmas in JET-ILW

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

49. A Flexible Pellet Injection System for the Tokamak JT-60SA: The Final Conceptual Design

50. Integrated core-SOL modelling of fuelling, density control and divertor heat loads for the flat-top phase of the ITER H-mode D-T plasma scenarios

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