Pyrolytic graphite: Inherent H-content and trapping of sub-eV D0 atoms
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference6 articles.
1. The effect of bulk hydrogen inventory on the chemical erosion of graphite
2. Measurement of retained deuterium by laser thermal desorption for carbon exposed to sub-eV atomic deuterium
3. Laser induced release of gases from first wall coatings for fusion applications
4. Trapping of deuterium implanted in carbon and silicon: A calibration for particle-energy measurements in the plasma boundary of tokamaks
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1. HIGH RESOLUTION ELECTRON ENERGY LOSS SPECTROSCOPY APPLIED TO A GRAPHITE SURFACE MODIFIED BY ION BOMBARDMENT;Surface Review and Letters;2000-08
2. Hydrogen isotope inventory in the graphite divertor tiles of ASDEX Upgrade as measured by thermal desorption spectroscopy;Nuclear Fusion;1997-10
3. Deuterium retention in doped graphites;Journal of Nuclear Materials;1996-09
4. Two‐region model for hydrogen trapping in and release from graphite;Journal of Applied Physics;1995-01
5. Retention of sub-eV atomic tritium and protium in pyrolytic graphite;Journal of Nuclear Materials;1991-05
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