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

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tHEME 4: HaRnESSing FuSiOn POWER<br />

1. l.R. baylor, <strong>Fusion</strong> Burn Control with Isotopic Fueling<br />

2. G. bench and m.J. Fluss, Triple Ion-Beam Radiation Materials User Facility: A Facility<br />

Upgrade of National Importance<br />

3. m.a.m. bourke, d.J. Rej, R.d. Fulton, J.l. sarrao, Material characterization in a 10 15 neutron<br />

cm -2 s -1 flux using light source X-rays<br />

4. t. burgess, y.k.-m Peng, and m. cole, RAMI <strong>Research</strong> Thrust Using a Full <strong>Fusion</strong> Nuclear<br />

Environment<br />

5. R.J. buttery, The Need <strong>for</strong> a <strong>Fusion</strong> Science Integration Experiment in the <strong>US</strong><br />

6. l. cadwallader, <strong>Fusion</strong> Operating Experience Data Collection at Present and in the Future<br />

7. J.m. canik, a. sontag, m. cole, m. kotchenreuther, P. valanju, Limiting the Divertor Heat<br />

Flux to Enable <strong>Fusion</strong> Nuclear Science <strong>Research</strong> at Low-A<br />

8. m. cole, y.k.-m. Peng, b. nelson, and t. burgess, <strong>Research</strong> Thrust on Magnets to Enable<br />

Low Aspect Ratio<br />

9. s. diem, d. batchelor, v. chan, a.m. Garofalo, y.k.-m. Peng, d. spong and a. sontag,<br />

<strong>Research</strong> Thrust to Establish Predictive Simulation Capability <strong>for</strong> <strong>Fusion</strong> Nuclear Science<br />

10. l. el-Guebaly and R. Raffray, Impact of Tritium Breeding on Design Implications to Withstand<br />

Disruptions and Runaway Electrons<br />

11. l. el-Guebaly and s. malang, Need <strong>for</strong> Online Adjustment/Control of Tritium Bred in Blanket<br />

12. l. el-Guebaly, Establishing Integrated Management Strategy <strong>for</strong> Activated Materials<br />

13. l. el-Guebaly, Need <strong>for</strong> High Tritium Burn-up Fraction in Plasma to Relax Tritium Breeding<br />

Requirement <strong>for</strong> Demo and <strong>Fusion</strong> Power Plants<br />

14. R.J. Goldston, Requirements <strong>for</strong> a Confinement Device with a Goal to Develop Tritium Breeding<br />

Blanket Modules, Based on FESAC <strong>Fusion</strong> Development Path Plan<br />

15. s. hsu, X. tang, y. Wang, and G. tynan, Synergistic Effects of Radiation Damage and Plasma-<br />

Material Interactions<br />

16. t.P. intrator and R.P majeski, Radio frequency sustainment and current drive <strong>for</strong> Compact<br />

Tori<br />

17. t.P. intrator, t. Jarboe, and R.l. miller, Reactor considerations <strong>for</strong> Compact Toroids<br />

18. k. korsah, b. Patton, and y.k.-m. Peng, Safety <strong>Research</strong> Thrust Using A Full <strong>Fusion</strong> Nuclear<br />

Environment<br />

19. R.J. kurtz and G.R. odette, Major Materials Issues <strong>for</strong> DEMO<br />

407

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