Bulletin of the American Physical Society
66th Annual Meeting of the APS Division of Plasma Physics
Monday–Friday, October 7–11, 2024; Atlanta, Georgia
Session UP12: Poster Session VIII:
Particle acceleration, beams and relativistic plasmas: Laser-driven sources, Relativistic interactions and Diagnostics and Measurement Techniques
MFE Disruptions Avoidance and Divertor Physics
ICF2: Advanced diagnostics and measurement innovation; Laser-plasma instabilities; Hohlraum and x-ray cavity physics; Hydrodynamic instability; ICF concepts and drivers; Ignition physics
High Energy Density Diagnostics
2:00 PM - 5:00 PM
Thursday, October 10, 2024
Hyatt Regency
Room: Grand Hall West
Abstract: UP12.00068 : Advancing Plasma-Facing Materials for Fusion Pilot Plants at DIII-D*
Presenter:
Jonathan D Coburn
(Sandia National Laboratories)
Authors:
Jonathan D Coburn
(Sandia National Laboratories)
Florian Effenberg
(Princeton Plasma Physics Laboratory)
Mary Alice Cusentino
(Sandia National Laboratories)
Chase Carrington Hargrove
(Pennsylvania State University)
Mykola Ialovega
(Univ. of Wisconsin-Madison)
Maria Morbey
(DIFFER- Dutch Institute For Fundamental Energy Research)
Lauren Nuckols
(Oak Ridge National Laboratory)
Zana Popovic
(Oak Ridge Associated Univerisites)
Shawn Zamperini
(General Atomics)
Tyler W Abrams
(General Atomics - San Diego)
Dmitry L Rudakov
(University of California, San Diego)
These PFMs will undergo exposures in the DIII-D tokamak to test their response to an integrated, reactor-like environment in upcoming campaigns. The tests will be coordinated through a two-year “FPP Candidate Materials Thrust” at DIII-D, allowing for down-selection of the most promising PFMs. Tests aim to quantify erosion rates, fuel retention, and material integrity under L- and H-mode conditions, leveraging DIII-D’s diagnostic and divertor exposure capabilities. This thrust will integrate materials from private and public institutions, advancing the Technological Readiness Level (TRL) of promising PFMs.
*Sandia is managed and operated by NTESS under DOE NNSA contract DE-NA0003525. Work also supported by US DOE under DE-AC02-09CH11466, DE-FC02-04ER54698, DE-SC00210005, DE-FG02-07ER54917, DE-SC0014664, DE-AR0001258, DE-SC0020284, and UW-Madison Dept of NEEP discretionary funding.
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