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Beryllium migration in JET ITER-like wall plasmas
JET Contributors
Jülich Research Centre
United Kingdom Atomic Energy Authority
Max Planck Institute for Plasma Physics
Association EURATOM-TEKES, VTT
KTH Royal Institute of Technology
Research output
:
Contribution to journal
›
Article
›
peer-review
97
Scopus citations
Overview
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Keyphrases
Beryllium
100%
ITER-like Wall
100%
Divertor
100%
JET-ILW
100%
Physical Sputtering
60%
First Wall
60%
Divertor Configuration
40%
Fuel Retention
40%
Impurity Sources
40%
Net Erosion
40%
Plasma-facing Components
40%
In Situ
20%
Charge Exchange
20%
Order of Magnitude
20%
Carbon-based
20%
Contact Point
20%
Material Deposition
20%
Post-mortem Analysis
20%
Ion Flux
20%
Carbon Deposition
20%
Erosion Zone
20%
Main Chamber
20%
Scrape-off Layer
20%
Self-sputtering
20%
W Divertor
20%
Target Plate
20%
Tokamak
20%
Sputtering Yield
20%
Layer Flow
20%
Strike Line
20%
Wall Components
20%
Gross Yield
20%
Residual Ions
20%
Deposition Zone
20%
Dust Production
20%
Divertor Material
20%
Plasma Condition
20%
Carbon Fiber Composite Plate
20%
Engineering
Limiters
100%
Plasma Facing Component
50%
Floors
25%
Duct
25%
Contact Point
25%
Carbon Fibre Composite
25%
Sputtering Yield
25%
Main Chamber
25%
Energetics
25%
Layer Flow
25%
Target Plate
25%
Tokamak Device
25%
Carbon Deposit
25%
Laminated Composite Plate
25%
Earth and Planetary Sciences
Test Stand
100%
Tokamak Device
100%
Carbon Fiber
100%
Fiber Composite
100%
Physics
Plasma Facing Component
100%
Energetics
50%
Carbon Fiber
50%
Fiber Composite
50%
Ion Current
50%
Tokamak Device
50%
Material Science
Beryllium
100%
Carbon Fiber
50%
Laminated Plate
50%
Divertor Material
50%