Thermal desorption of hydrogen isotopes from the JET Be plasma facing components
Author:
Funder
H2020 Euratom
Publisher
IOP Publishing
Subject
Condensed Matter Physics,Mathematical Physics,Atomic and Molecular Physics, and Optics
Link
https://iopscience.iop.org/article/10.1088/1402-4896/ab3c38/pdf
Reference21 articles.
1. Erosion at the inner wall of JET during the discharge campaign 2011–2012 in comparison with previous campaigns
2. Beryllium coatings on metals for marker tiles at JET: development of process and characterization of layers
3. Erosion at the inner wall of JET during the discharge campaign 2013–2014
4. The effect of beryllium oxide on retention in JET ITER-like wall tiles
5. Material migration patterns and overview of first surface analysis of the JET ITER-like wall
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1. Detritiation of JET Beryllium and Tungsten;Fusion Science and Technology;2023-06-23
2. D retention and material defects probed using Raman microscopy in JET limiter samples and beryllium-based synthesized samples;Physica Scripta;2021-09-27
3. Tritium retention in plasma facing materials of JET ITER-Like-Wall retrieved from the vacuum vessel in 2012 (ILW1), 2014 (ILW2) and 2016 (ILW3);Nuclear Materials and Energy;2021-06
4. Fuel inventory and material migration of JET main chamber plasma facing components compared over three operational periods;Physica Scripta;2020-01-01
5. Comparative study of deuterium retention in irradiated Eurofer and Fe–Cr from a new ion implantation materials facility;Nuclear Fusion;2019-11-25
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