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Research Needs for Magnetic Fusion Energy Sciences - US Burning ...

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20. J. leuer and d. humpreys, Solenoidless Startup <strong>Research</strong> Thrusts <strong>for</strong> Tokamaks<br />

21. R.P. majeski, m. kotschenreuther, J. manickam, s.a. sabbagh, l.e. zakharov, and l.<br />

zheng, Potential impact of low recycling equilibria and lithium walls on reactor design<br />

22. l. marrelli, Issues on active control of MHD instabilities in a RFP<br />

23. s. masamune, A scenario <strong>for</strong> steady state low-aspect-ratio RFP sustained by pressure-driven<br />

and RF/NBI-driven currents<br />

24. h. mclean, c.R. sovinec, s. Woodruff, and m. yamada, Cross-cutting Connections between<br />

the Spheromak and the Reversed-Field Pinch (RFP)<br />

25. R. moyer, t.e. evans, R. Groebner, h. Reimerdes, and P. snyder, Pedestal Optimization <strong>for</strong><br />

Confinement and ELM Control<br />

26. G.h. neilson and J. harris, Advancing Stellarator Knowledge Through International Collaboration<br />

27. R.e. nygren, Future Plasma Facing Components (PFCs) & In-vessel Components (IVCs):<br />

Strengthened Sustained and Integrated Approach <strong>for</strong> Modeling and Testing HHFCs<br />

28. y.k.-m. Peng, m. cole, b. Patton, G. yoder, k. korsah, t. burgess, y. katoh, J. Wagner,<br />

a. sontag, J.m. canik, s. diem, R.d. stambaugh, v.s. chan, c.P.c. Wong, s. kaye, <strong>Fusion</strong><br />

Nuclear Science <strong>Research</strong> Thrust and the Required Full <strong>Fusion</strong> Nuclear Environment<br />

29. n. Pomphrey, a. Reiman, and a h. boozer, Benefits of moderate 3D fields in Tokamaks -<br />

NHTX as an example<br />

30. R. Raman, t.R. Jarboe, b.a. nelson, d. mueller, and m.G. bell, <strong>Research</strong> Thrust on Plasma<br />

Startup & Ramp-up<br />

31. R. Raman, t.R. Jarboe, and h.W. kugel, <strong>Research</strong> Thrust on Advanced Plasma Fuelling<br />

32. a. Reiman, Development of a Predictive Simulation Capability <strong>for</strong> Three-Dimensional<br />

Configurations<br />

33. a. Reiman, Stellarator Operational Limits<br />

34. J. slough, Development of a high fluence fusion neutron source and component test facility<br />

based on the magneto-kinetic compression of FRCs<br />

35. J. slough, Next Step <strong>Needs</strong> <strong>for</strong> FRC Stability And Sustainment Studies<br />

36. a. sontag, J.b.o. caughman, s. diem, R. Fonck, a. Garofalo, R. Raman, a. Redd, and v.<br />

shevchenko, <strong>Research</strong> Thrust on Plasma Startup & Ramp-up to Enable <strong>Fusion</strong> Nuclear Science<br />

<strong>Research</strong> at Low-A<br />

37. c.R. sovinec, Computational <strong>Needs</strong> <strong>for</strong> Reversed-Field Pinch and Spheromak Development<br />

38. d.a. spong, Fast ion stability and wall heat loading in stellarators<br />

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