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1. Lessons learned after three years of SPIDER operation and the first MITICA integrated tests

3. Strategy for Vacuum Insulation Tests of MITICA 1 MV Electrostatic Accelerator

11. Preparation of the vacuum insulation tests on the MITICA 1 MV electrostatic Accelerator

12. On the road to ITER NBIs: SPIDER improvement after first operation and MITICA construction progress

13. First operation in SPIDER and the path to complete MITICA

15. Progress in the ITER neutral beam test facility

18. A substantial step forward in the realization of the ITER HNB system: The ITER NBI Test Facility

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

22. Determination of the meniscus shape of a negative ion beam from an experimentally obtained beam profile

25. Final design of the beam source for the MITICA injector

27. Demonstration of long-pulse acceleration of high power positive ion beam with JT-60 positive ion source in Japan–Korea joint experiment

28. Progress in the realization of the PRIMA neutral beam test facility

29. Heating neutral beams for ITER: Present status

30. R&D progress of 1 MV power supply system for ITER

31. Progress in long-pulse production of powerful negative ion beams for JT-60SA and ITER

37. Structural analyses of HV bushing for ITER heating NB system

39. Structural analyses and integrated design of the MITICA Injector assembly

41. Recent improvements to the ITER neutral beam system design

42. Commissioning of the first KSTAR neutral beam injection system and beam experiments

44. First neutral beam injection experiments on KSTAR tokamak

46. Voltage holding study of 1 MeV accelerator for ITER neutral beam injector

48. Progress in development and design of the neutral beam injector for JT-60SA

49. Achievement of 500 keV negative ion beam acceleration on JT-60U negative-ion-based neutral beam injector

50. Development of a plasma generator for a long pulse ion source for neutral beam injectors

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