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

2. Divertor Tokamak Test facility project: status of design and implementation

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3. Optimizing the ITER NBI ion source by dedicated RF driver test stand

5. Highlights of recent SPIDER results and improvements

10. First operations with caesium of the negative ion source SPIDER

12. Preliminary parametric analysis of the first neutrons measured with a scintillator array at SPIDER

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

15. First measurement of neutrons produced by deuterium fusion reactions in SPIDER

16. Completion of JT-60SA construction and contribution to ITER

17. Regularization issues for a cold and dense quark matter with a chiral imbalance

20. Neutralisation and transport of negative ion beams: physics and diagnostics

21. The PRIMA Test Facility: SPIDER and MITICA test-beds for ITER neutral beam injectors

22. Study of high DC voltage breakdown between stainless steel electrodes separated by long vacuum gaps

23. Real-time control of divertor detachment in H-mode with impurity seeding using Langmuir probe feedback in JET-ITER-like wall

24. Role of fast ion pressure in the isotope effect in JET L-mode plasmas

25. EDGE2D-EIRENE simulations of the influence of isotope effects and anomalous transport coefficients on near scrape-off layer radial electric field

28. Negative ion characterization in a helicon plasma source for fusion neutral beams by cavity ring-down spectroscopy and Langmuir probe laser photodetachment

31. Advances in the physics studies for the JT-60SA tokamak exploitation and research plan

32. Overview of the JET preparation for deuterium–tritium operation with the ITER like-wall

33. Progress in the ITER neutral beam test facility

34. Global and pedestal confinement and pedestal structure in dimensionless collisionality scans of low-triangularity H-mode plasmas in JET-ILW

35. Evidence of9Be + pnuclear reactions during 2ωCHand hydrogen minority ICRH in JET-ILW hydrogen and deuterium plasmas

36. Effect of the relative shift between the electron density and temperature pedestal position on the pedestal stability in JET-ILW and comparison with JET-C

37. High fusion performance at highTi/Tein JET-ILW baseline plasmas with high NBI heating power and low gas puffing

38. A power-balance model of the density limit in fusion plasmas: application to the L-mode tokamak

39. Modification of the Alfvén wave spectrum by pellet injection

40. Multi-machine scaling of the main SOL parallel heat flux width in tokamak limiter plasmas

41. Novel method for determination of tritium depth profiles in metallic samples

42. Beryllium melting and erosion on the upper dump plates in JET during three ITER-like wall campaigns

43. Role of the pedestal position on the pedestal performance in AUG, JET-ILW and TCV and implications for ITER

44. The software and hardware architecture of the real-time protection of in-vessel components in JET-ILW

45. COREDIV numerical simulation of high neutron rate JET-ILW DD pulses in view of extension to JET-ILW DT experiments

46. Radial variation of heat transport in L-mode JET discharges

47. Active MHD control at high currents in RFX-mod

48. Evidences of accumulation points in cascade regenerative phenomena observed in high voltage dc devices insulated by long vacuum gaps

49. Dynamics and stability of divertor detachment in H-mode plasmas on JET

50. Comparison of runaway electron generation parameters in small, medium-sized and large tokamaks—A survey of experiments in COMPASS, TCV, ASDEX-Upgrade and JET