2015
DOI: 10.1016/j.jnucmat.2015.09.006
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Retention of nanocrystalline WNx layers exposed to high-fluence deuterium plasmas

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Cited by 4 publications
(6 citation statements)
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“…The ion flux was chosen as close as possible to ITER relevant fluxes of 10 24 m -2 s -1 while keeping the temperature at reasonably low value. Previous studies with tungsten based coatings have used similar fluences with an order of magnitude higher ion flux values comparable to the high fluxes expected in ITER divertor tiles [6,10,40] or orders of magnitude smaller fluences and fluxes [7,9]. The lateral distribution of ion and electron fluxes in linear plasma devices have Gaussian profile whereas the width of the profile is different for ions and electrons.…”
Section: Deuterium Loading By Magnum-psi Plasmamentioning
confidence: 85%
“…The ion flux was chosen as close as possible to ITER relevant fluxes of 10 24 m -2 s -1 while keeping the temperature at reasonably low value. Previous studies with tungsten based coatings have used similar fluences with an order of magnitude higher ion flux values comparable to the high fluxes expected in ITER divertor tiles [6,10,40] or orders of magnitude smaller fluences and fluxes [7,9]. The lateral distribution of ion and electron fluxes in linear plasma devices have Gaussian profile whereas the width of the profile is different for ions and electrons.…”
Section: Deuterium Loading By Magnum-psi Plasmamentioning
confidence: 85%
“…The linear device GyM was originally thought to investigate basic plasma physics [16][17][18], as mentioned in Section 1. Since 2014, it has been mainly used to study the issue of PMI for nuclear fusion applications [19][20][21][22][23][24][25][26][27][28][29][30].…”
Section: Plasma-materials Interaction Studies On Gymmentioning
confidence: 99%
“…The main aspects of the PMI issue investigated with GyM are: (i) the erosion dynamics of reduced activation ferritic martensitic (RAFM) steels, like Eurofer-97, candidate for the recessed elements of the first wall of DEMO [22], (ii) the effects of plasma on laboratoryprepared nanostructured tungsten coatings used to mimic tokamak W-based re-deposits [19,29,30], (iii) the adhesion of micron-sized tungsten dust particles deposited on W substrates [26,27], (iv) the deuterium retention of divertor-relevant liquid tin [24], and (v) the erosion of solid bulk Sn and W samples for the determination of the spectroscopic parameter S/XB [23,24]. As mentioned earlier, another well-established activity is (vi) the study of ammonia formation in nitrogen-seeded deuterium plasmas [20,21,25].…”
Section: Plasma-materials Interaction Studies On Gymmentioning
confidence: 99%
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