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

2. The impact of surface morphology on the erosion of metallic surfaces – Modelling with the 3D Monte-Carlo code ERO2.0

3. Improved ERO modelling of beryllium erosion at ITER upper first wall panel using JET-ILW and PISCES-B experience

4. Surface roughness effect on Mo physical sputtering and re-deposition in the linear plasma device PSI-2 predicted by ERO2.0

5. Influence of heavier impurity deposition on surface morphology development and sputtering behavior explored in multiple linear plasma devices

6. Beryllium global erosion and deposition at JET-ILW simulated with ERO2.0

7. A sensitivity analysis of numerical predictions for beryllium erosion and migration in ITER

8. Boron transport simulation using the ERO2.0 code for real-time wall conditioning in the large helical device

9. Enhanced performance in fusion plasmas through turbulence suppression by megaelectronvolt ions

10. Disruption prediction with artificial intelligence techniques in tokamak plasmas

11. Enhanced performance in fusion plasmas through turbulence suppression by megaelectronvolt ions

12. ERO modelling of tungsten erosion in the linear plasma device PSI-2

13. ERO modeling of beryllium erosion by helium plasma in experiments at PISCES-B

15. Anisotropic Diffusion in Toroidal geometries

17. Disruption prediction with artificial intelligence techniques in tokamak plasmas

18. Simulation of Impurity Transport and Deposition in the Closed Helical Divertor in the Large Helical Device

19. Overview of JET results for optimising ITER operation

20. Overview of JET results for optimising ITER operation

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

23. First principles and integrated modelling achievements towards trustful fusion power predictions for JET and ITER

24. Influence of heavier impurity deposition on surface morphology development and sputtering behavior explored in multiple linear plasma devices

25. ERO2.0 and SOLPS-ITER modelling of rough W coatings exposures to He plasmas in the linear machine GyM

26. The impact of surface morphology on the erosion of metallic surfaces - modelling with the 3D Monte-Carlo code ERO2.0

27. Tomographic reconstruction of the three-dimensional beryllium emissivity profile in the ITER boundary plasma taking into account the reflections of light from the first wall

29. Simulation of Impurity Transport and Deposition in the Closed Helical Divertor in the Large Helical Device

30. Adaptive learning for disruption prediction in non-stationary conditions

32. Effect of surface morphology on erosion of metallic plasma-facing materials modelled with the 3D Monte-Carlo code ERO

33. ERO2.0 modelling of the effects of surface roughness on molybdenum erosion and redeposition in the PSI-2 linear plasma device

34. Quantification of erosion pattern using picosecond-LIBS on a vertical divertor target element exposed in W7-X

35. Predictive 3D modelling of erosion and deposition in ITER with ERO2.0: from beryllium main wall, tungsten divertor to full-tungsten device

36. Angular and velocity distributions of tungsten sputtered by low energy argon ions

40. ERO2.0 modelling of the effects of surface roughness on molybdenum erosion and redeposition in the PSI-2 linear plasma device

41. First Monte‐Carlo modelling of global beryllium migration in ITER using ERO2.0

42. Preferential sputtering induced Cr-Diffusion during plasma exposure of WCrY smart alloys

43. ERO modeling of beryllium erosion by helium plasma in experiments at PISCES-B

45. Overview of the JET preparation for deuterium-tritium operation with the ITER like-wall Recent citations

46. Multiphysics approach to plasma neutron source modelling at the JET tokamak

47. Interpretative and predictive modelling of Joint European Torus collisionality scans

48. Surface roughness effect on Mo physical sputtering and re-deposition in the linear plasma device PSI-2 predicted by ERO2.0

49. Improved ERO modelling of beryllium erosion at ITER upper first wall panel using JET-ILW and PISCES-B experience

50. First Monte-Carlo modelling of global beryllium migration in ITER using ERO2.0

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