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1. Flexible Stellarator Physics Facility

2. MONKES: a fast neoclassical code for the evaluation of monoenergetic transport coefficients

3. Single-Stage Stellarator Optimization: Combining Coils with Fixed Boundary Equilibria

4. Direct Microstability Optimization of Stellarator Devices

5. Energetic particle loss mechanisms in reactor-scale equilibria close to quasisymmetry

6. A single-field-period quasi-isodynamic stellarator

7. Stellarator optimization for nested magnetic surfaces at finite $\beta$ and toroidal current

8. Energetic particle transport in optimized stellarators

9. Ion-temperature-gradient stability near the magnetic axis of quasisymmetric stellarators

10. The Use of Near-Axis Magnetic Fields for Stellarator Turbulence Simulations

11. A New Optimized Quasihelically SymmetricStellarator

12. Construction of Quasisymmetric Stellarators Using a Direct Coordinate Approach

13. Near-Axis Expansion of Stellarator Equilibrium at Arbitrary Order in the Distance to the Axis

14. Direct construction of optimized stellarator shapes. III. Omnigenity near the magnetic axis

15. On-surface potential and radial electric field variations in electron root stellarator plasmas

16. An adjoint method for gradient-based optimization of stellarator coil shapes

17. Laguerre-Hermite Pseudo-Spectral Velocity Formulation of Gyrokinetics

18. Rotation and Neoclassical Ripple Transport in ITER

21. Optimization of nonlinear turbulence in stellarators

22. Runaway-electron formation and electron slide-away in an ITER post-disruption scenario

23. NORSE: A solver for the relativistic non-linear Fokker-Planck equation for electrons in a homogeneous plasma

24. Parallel impurity dynamics in the TJ-II stellarator

25. Global effects on neoclassical transport in the pedestal with impurities

26. Kinetic modelling of runaway electrons in dynamic scenarios

28. Synchrotron radiation from a runaway electron distribution in tokamaks

29. Compressible impurity flow in the TJ-II stellarator

31. Impurity flows and plateau-regime poloidal density variation in a tokamak pedestal

32. Constructing precisely quasi-isodynamic magnetic fields

33. Bright quasi-phasematched soft x-ray harmonic radiation from Argon ions

34. Quasi-phasematching of harmonic generation via multimode beating in waveguides

35. Improved understanding of physics processes in pedestal structure, leading to improved predictive capability for ITER

37. Experimental confirmation of efficient island divertor operation and successful neoclassical transport optimization in Wendelstein 7-X

39. Constructing precisely quasi-isodynamic magnetic fields

43. Improving the stellarator through advances in plasma theory

44. Experimental confirmation of efficient island divertor operation and successful neoclassical transport optimization in Wendelstein 7-X

47. Experimental confirmation of efficient island divertor operation and successful neoclassical transport optimization in Wendelstein 7-X

48. Improving the stellarator through advances in plasma theory

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