Skip to main navigation
Skip to search
Skip to main content
VTT's Research Information Portal Home
Search content at VTT's Research Information Portal
Home
Profiles
Research output
Projects
Datasets
Research units
Research Infrastructures
Activities
Prizes
Press/Media
Impacts
First evidence of helium in the tungsten divertor of the WEST tokamak
M. Diez
, C. Martin
,
Antti Hakola
, A. Huart
, Y. Corre
, J. Gaspar
, Z. Siketić
, G. Giacometti
, T. Neisius
, M. Cabié
, Q. Tichit
, Tomi Vuoriheimo
, A. Benmoumen
, E. Tsitrone
, I.Bogdanovic Radovic
*
, WEST Team
*
Corresponding author for this work
BA4511 Fusion energy
Commissariat a l'Energie Atomique et aux Energies Alternatives (CEA)
Aix-Marseille Université
Ruđer Bošković Institute (IRB)
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'First evidence of helium in the tungsten divertor of the WEST tokamak'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Coated Graphite
33%
Divertor
33%
Divertor Components
33%
Electron Microscopy
33%
Energy Fluence
33%
Energy Surface
33%
Fusion Reactor
33%
Future Fusion
33%
Helium
100%
Helium Content
33%
Helium Plasma
33%
High Energy
33%
High Fluence
33%
Ion Beam Analysis
33%
Microbubbles
33%
Microstructure
33%
Plasma Scenarios
33%
Plasma-facing Components
33%
Postmortem Study
33%
Potential Change
33%
Strike Point
33%
Surface Morphology Changes
33%
Surface Temperature
33%
Tungsten Divertor
100%
Tungsten Fuzz
66%
WEST Tokamak
100%
INIS
concentration
12%
depth
12%
distribution
12%
divertors
100%
electron microscopy
12%
energy
12%
first wall
12%
fusion reactors
12%
graphite
12%
helium
100%
ion beams
12%
iter tokamak
25%
microstructure
12%
morphology
12%
plasma
25%
surfaces
62%
tokamak devices
100%
tungsten
100%
Physics
Electron Microscopy
12%
Fluence
12%
Helium
100%
Helium Plasma
12%
Ion Beam
12%
Nuclear Reactor
12%
Tokamak Device
100%
Tungsten
100%
Material Science
Electron Microscopy
12%
Helium
100%
Surface Morphology
12%
Tungsten
100%