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1. 3D radiated power analysis of JET SPI discharges using the Emis3D forward modeling tool

2. DIII-D research to provide solutions for ITER and fusion energy

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

4. Runaway electron plateau current profile reconstruction from synchrotron imaging and Ar-II line polarization angle measurements in DIII-D

5. Wall heating by subcritical energetic electrons generated by the runaway electron avalanche source

6. Density and temperature profiles after low-Z and high-Z shattered pellet injections on DIII-D

7. Parametric study of Alfvénic instabilities driven by runaway electrons during the current quench in DIII-D

8. Trends in runaway electron plateau partial recombination by massive H2 or D2 injection in DIII-D and JET and first extrapolations to ITER and SPARC

9. Mitigation of divertor heat flux by high-frequency ELM pacing with non-fuel pellet injection in DIII-D

10. DIII-D research advancing the physics basis for optimizing the tokamak approach to fusion energy

11. Physics of runaway electrons with shattered pellet injection at JET

12. Reducing the L-H transition power threshold in ITER-similar-shape DIII-D hydrogen plasmas

13. Measurement and simulation of small cryogenic neon pellet Ne-I 640 nm photon efficiency during ablation in DIII-D plasma

16. DIII-D research towards establishing the scientific basis for future fusion reactors

17. DIII-D research towards establishing the scientific basis for future fusion reactors

18. Extreme low-edge safety factor tokamak scenarios via active control of three dimensional magnetic fields on RFX and DIII-D

19. Avoidance of Tearing Mode Locking and Disruption with Electro-Magnetic Torque Introduced by Feedback-Based Mode Rotation Control in DIII-D and RFX-Mod

20. Extreme Low-Edge Safety Factor Tokamak Scenarios via Active Control of Three-Dimensional Magnetic Field on RFX and DIII-D

21. Runaway electron seed formation at reactor-relevant temperature.

22. Runaway electron beam dynamics at low plasma density in DIII-D: energy distribution, current profile, and internal instability.

23. Setting the H-mode pedestal structure: variations of particle source location using gas puff and pellet fueling.

24. Shattered pellet penetration in low and high energy plasmas on DIII-D.

25. EFFECTS OF EXPERIMENTAL HYPOGRAVITY ON PEROXIDASE AND CELL WALL CONSTITUENTS IN THE DWARF MARIGOLD

26. Effects of experimental hypogravity on peroxidase and cell wall constituents in the dwarf marigold

27. Controlled neoclassical tearing mode (NTM) healing by fueling pellets and its impact on electron cyclotron current drive requirements for complete NTM stabilization.

28. Observation of rapid frequency chirping instabilities driven by runaway electrons in a tokamak.

29. Injection of multiple shattered pellets for disruption mitigation in DIII-D.

30. Study of argon assimilation into the post-disruption runaway electron plateau in DIII-D and comparison with a 1D diffusion model.

31. First observation of plasma healing via helical equilibrium in tokamak disruptions.

32. Recent DIII-D advances in runaway electron measurement and model validation.

33. Shattered pellet injection technology design and characterization for disruption mitigation experiments.

34. Kink instabilities of the post-disruption runaway electron beam at low safety factor.

35. Physics of runaway electrons with shattered pellet injection at JET

36. Overview of JET results for optimising ITER operation

37. The role of kinetic instabilities in formation of the runaway electron current after argon injection in DIII-D.

38. Dissipation of post-disruption runaway electron plateaus by shattered pellet injection in DIII-D.

39. A path to stable low-torque plasma operation in ITER with test blanket modules.

40. Use of Ar pellet ablation rate to estimate initial runaway electron seed population in DIII-D rapid shutdown experiments.

41. Avoidance of tearing mode locking with electro-magnetic torque introduced by feedback-based mode rotation control in DIII-D and RFX-mod.

42. High frequency pacing of edge localized modes by injection of lithium granules in DIII-D H-mode discharges.

43. The non-thermal origin of the tokamak low-density stability limit.

44. First demonstration of rapid shutdown using neon shattered pellet injection for thermal quench mitigation on DIII-D.

45. Electromechanical modelling and design for phase control of locked modes in the DIII-D tokamak.

46. Landau resonant modification of multiple kink mode contributions to 3D tokamak equilibria.

47. Characterization of MHD activity and its influence on radiation asymmetries during massive gas injection in DIII-D.

48. The role of MHD in 3D aspects of massive gas injection.

49. Measurements of the toroidal torque balance of error field penetration locked modes.

50. Demonstration of Tokamak Discharge Shutdown with Shell Pellet Payload Impurity Dispersal.

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