High-Heat-Flux Target Design for the Material Plasma Exposure eXperiment

Author:

Lumsdaine Arnold1ORCID,Tipton Joseph B.2,Youchison Dennis1,Varma Venu1,Logan Kirby1,Rapp Juergen1

Affiliation:

1. Oak Ridge National Laboratory, Oak Ridge, Tennessee

2. Lipscomb University, Nashville, Tennessee

Publisher

Informa UK Limited

Subject

Mechanical Engineering,General Materials Science,Nuclear Energy and Engineering,Nuclear and High Energy Physics,Civil and Structural Engineering

Reference17 articles.

1. “2009 Research Needs for Magnetic Fusion Energy Sciences—Report of the Research Needs Workshop,” U.S. Department of Energy, Office of Fusion Energy Sciences; http://burningplasma.org/web/ReNeW/ReNeW.report.web2.pdf (current as of Jan. 15, 2019).

2. “FESAC Report on Opportunities for Fusion Materials Science and Technology: Research Now and During the ITER Era 2012,” DOE/SC-0149, U.S. Department of Energy; http://science.energy.gov/~/media/fes/pdf/workshop-reports/20120309/FESAC-Materials-Sciencefinal-report.pdf (current as of Jan. 15, 2019).

3. “Report of the FESAC Subcommittee on the Priorities of the Magnetic Fusion Energy Science Program 2013,” U.S. Department of Energy; http://science.energy.gov/~/media/fes/fesac/pdf/2013/Final-Report-02102013.pdf (current as of Jan. 15, 2019).

4. “Report on Science Challenges and Research Opportunities in Plasma Materials Interactions 2015,” U.S. Department of Energy, Office of Fusion Energy Sciences; https://www.burningplasma.org/resources/ref/Workshops2015/PMI/PMI_fullreport_21Aug2015.pdf (current as of Jan. 15, 2019).

5. NATIONAL ACADEMIES OF SCIENCES, ENGINEERING, AND MEDICINE, Final Report of the Committee on a Strategic Plan for U.S. Burning Plasma Research, pp. 5–6, U.S. Department of Energy, Office of Fusion Energy Sciences, The National Academies Press, Washington, D.C. (2018);

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