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surfaces
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retention
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tungsten
100%
jets
100%
deuterium
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divertors
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mixing
100%
interfaces
60%
depth
60%
scanning electron microscopy
40%
beams
40%
nra
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trapping
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sims
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layers
20%
comparative evaluations
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images
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energy
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plasma
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coatings
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concentration
20%
operation
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range
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deposition
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walls
20%
iter tokamak
20%
nuclear reaction analysis
20%
helium 3
20%
pits
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maps
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MeV range
20%
auger electron spectroscopy
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Keyphrases
Tungsten
100%
Divertor
100%
Deuterium Retention
100%
Coated Surface
100%
W-Mo
100%
ITER-like Wall
33%
Deuterium
33%
Surface Roughness Effect
33%
Nuclear Reaction Analysis
33%
Deposition Layer
33%
Microbeam
33%
Divertor Tiles
33%
Flat Surface
33%
Surface Zone
33%
Elemental Maps
33%
Depth Profile
33%
Wet Surface
33%
ICP-AES Analysis
33%
SEM Images
33%
Beam Energy
33%
Surface Sampling
33%
Engineering
Nuclear Reaction Analysis
100%
Depth Profile
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Surface Region
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Sample Surface
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Roughness Effect
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Beam Energy
100%
Flat Surface
100%
Physics
Deuterium
100%
Scanning Electron Microscopy
100%
Microbeam
50%
Nuclear Reaction
50%
Surface Roughness Effect
50%
Flat Surface
50%
Blood Plasma
50%
Atomic Emission Spectroscopy
50%
Inductively Coupled Plasma Method
50%
Chemical Element
50%
Chemistry
Scanning Electron Microscopy
100%
Secondary Ion Mass Spectroscopy
100%
Deuterium
100%
Inductively Coupled Plasma Atomic Emission Spectroscopy
50%
Chemical Element
50%
Nuclear Reaction
50%
Surface Roughness
50%
Material Science
Tungsten
100%
Surface (Surface Science)
100%
Deuterium
100%
Scanning Electron Microscopy
66%
Secondary Ion Mass Spectrometry
66%
Surface Roughness
33%
Inductively Coupled Plasma Atomic Emission Spectroscopy
33%