Bulletin of the American Physical Society
65th Annual Meeting of the APS Division of Plasma Physics
Monday–Friday, October 30–November 3 2023; Denver, Colorado
Session BP11: Poster Session I:
Fundamental: Magnetic Reconnection; Dusty plasmas & Nanoparticle synthesis
ICF measurement and analysis
Space plasma physics
MFE: Disruptions avoidance and mitigation; Whole device modeling and reactor technologies
9:30 AM - 12:30 PM
Monday, October 30, 2023
Room: Plaza ABC
Abstract: BP11.00117 : Replication of near-supersonic, runaway electron induced dust-wall impacts using a two-stage light-gas gun
Presenter:
Francisco Suzuki-Vidal
(First Light Fusion)
Authors:
Francisco Suzuki-Vidal
(First Light Fusion)
Hugo W Doyle
(First Light Fusion Ltd)
Timothy Ringrose
(First Light Fusion Ltd)
Jay Shadbolt
(First Light Fusion Ltd)
Samuel Kelly
(First Light Fusion Ltd)
Peter Jarvis
(First Light Fusion Ltd)
Marco De Angeli
(Institute for Plasma Science and Technology, CNR, Italy)
Dario Ripamonti
(Institute of Condensed Matter Chemistry and Energy Technologies, CNR, Italy)
Panagiotis Tolias
(Space and Plasma Physics - KTH Royal Institute of Technology, Sweden)
The physics of dust-PFC impact damage have been studied through experiments that launch dust to near supersonic speeds using First Light Fusion’s two-stage light-gas gun (12.7 mm diameter bore, 7.5 m long [4]). Spherical molybdenum particles with a diameter of 71 um have been launched inside a 2-part sabot to velocities of ~1-2km/s towards cryogenically cooled TZM targets. The set up mimics recent observations at the FTU tokamak [2]. The crater geometry has been analyzed with surface techniques. The effect of the PFC temperature (room vs cryogenic) on the crater dimensions and crater micro-morphology is discussed.
[1] G. F. Matthews et al., Phys. Scr. T167, 014070 (2016)
[2] M. De Angeli et al., Nucl. Fusion 63, 014001 (2023)
[3] P. Tolias et al., arXiv:2208.02897 (2023)
[4] T. J. Ringrose et al., Procedia engineering 204, 344-351 (2017)
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