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1. Predictive power-sharing scaling law in double-null L-mode plasmas

2. SPLEND1D, a reduced one-dimensional model to investigate the physics of plasma detachment

3. Modelling of power exhaust in TCV positive and negative triangularity L-mode plasmas

4. Divertor shaping with neutral baffling as a solution to the tokamak power exhaust challenge

5. Investigating the influence of divertor baffles on nitrogen-seeded detachment in TCV with SOLPS-ITER simulations and TCV experiments

6. Comparison of detachment in Ohmic plasmas with positive and negative triangularity

7. Parallel flows as a key component to interpret Super-X divertor experiments

8. Performance assessment of a tightly baffled, long-legged divertor configuration in TCV with SOLPS-ITER

9. Improved Heat and Particle Flux Mitigation in High Core Confinement, Baffled, Alternate Divertor Configurations in the TCV tokamak

11. New insights on divertor parallel flows, ExB drifts, and fluctuations from in situ, two-dimensional probe measurement in the Tokamak \`a Configuration Variable

12. Experimental research on the TCV tokamak

13. Divertor shaping with neutral baffling as a solution to the tokamak power exhaust challenge

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

17. X-point radiator and power exhaust control in configurations with multiple X-points in TCV.

18. Modelling of power exhaust in TCV positive and negative triangularity L-mode plasmas.

22. Numerical study of divertor detachment in TCV H-mode scenarios

23. Prospects of Core–edge Integrated No-ELM and Small-ELM Scenarios for Future Fusion Devices

24. The X-Point radiating regime at ASDEX Upgrade and TCV

25. Model-based impurity emission front control using deuterium fueling and nitrogen seeding in TCV

27. Prospects of core–edge integrated no-ELM and small-ELM scenarios for future fusion devices

28. The X-Point radiating regime at ASDEX Upgrade and TCV

29. Prospects of Core–edge Integrated No-ELM and Small-ELM Scenarios for Future Fusion Devices

30. Reduction in benefits of total flux expansion on divertor detachment due to parallel flows

33. Improved heat and particle flux mitigation in high core confinement, baffled, alternative divertor configurations in the TCV tokamak

35. Overview of the TCV tokamak experimental programme

36. A spectroscopic inference and SOLPS-ITER comparison of flux-resolved edge plasma parameters in detachment experiments on TCV

38. Overview of the TCV tokamak experimental programme

39. Evidence on the effects of main-chamber neutrals on density shoulder broadening

40. Implementation of high-resolution spectroscopy for ion (and electron) temperature measurements of the divertor plasma in the Tokamak à configuration variable

41. Validation of 2D Te and ne measurements made with Helium imaging spectroscopy in the volume of the TCV divertor

42. Enhanced confinement in diverted negative-triangularity L-mode plasmas in TCV

45. Divertor closure effects on the TCV boundary plasma

46. Gas puff imaging on the TCV tokamak.

48. Feedback control using divertor multi-spectral imaging diagnostics

49. Experimental impurity concentrations required to reach detachment on AUG and JET

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