Re-emission of deuterium from pure and boronized graphite
Author:
Publisher
Elsevier BV
Subject
Instrumentation,Nuclear and High Energy Physics
Reference9 articles.
1. Flux and fluence dependence of H+ trapping in graphite
2. The interaction of tritium with graphite and its impact on tokamak operations
3. Reemission of deuterium from graphite at temperatures above 1100 K
4. K.L. Wilson, private communication.
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2. Deuterium release from deuterium plasma-exposed neutron-irradiated and non-neutron-irradiated tungsten samples during annealing;Nuclear Fusion;2020-08-12
3. Surface morphology and deuterium retention in tungsten and tungsten–rhenium alloy exposed to low-energy, high flux D plasma;Journal of Nuclear Materials;2014-11
4. Temperature dependence of surface morphology and deuterium retention in polycrystalline ITER-grade tungsten exposed to low-energy, high-flux D plasma;Journal of Nuclear Materials;2012-01
5. Temperature dependence of surface topography and deuterium retention in tungsten exposed to low-energy, high-flux D plasma;Journal of Nuclear Materials;2011-10
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