INIS
impurities
100%
gases
100%
breakdown
100%
spectroscopy
100%
lasers
100%
depth
50%
layers
33%
processing
33%
first wall
33%
jet tokamak
33%
comparative evaluations
16%
surfaces
16%
data
16%
plasma
16%
fuels
16%
operation
16%
machine learning
16%
variations
16%
walls
16%
thermonuclear devices
16%
spectra
16%
ions
16%
deposits
16%
investigations
16%
beryllium
16%
algorithms
16%
ablation
16%
mass spectrometry
16%
fusion reactors
16%
experimental reactors
16%
Keyphrases
Laser-induced Breakdown Spectroscopy
100%
Spectroscopic Diagnostics
100%
Gas Impurities
100%
Spectral Lines
33%
Depth Profile
33%
Joint European Torus
33%
Plasma-facing Components
16%
Fusion Devices
16%
Deposition Layer
16%
Secondary Ion Mass Spectrometry
16%
Beryllium
16%
First Wall
16%
Co-deposits
16%
Synthetic Data
16%
Spectroscopic Measurement
16%
Fusion Reactor
16%
Ablation Rate
16%
Safe Operation
16%
Machine Learning Models
16%
Surface Deposition
16%
Accuracy Analysis
16%
International Thermonuclear Experimental Reactor
16%
Adaptation Models
16%
Preprocessing Algorithm
16%
Experimental Spectra
16%
Engineering
Depth Profile
100%
Joints (Structural Components)
100%
Line Spectra
100%
Ablation Rate
50%
Safe Operation
50%
Experimental Reactors
50%
Plasma Facing Component
50%
Processing Algorithm
50%
Fusion Reactor
50%
Learning System
50%
Chemical Engineering
Secondary Ion Mass Spectrometry
100%
Learning System
100%
Plasma Facing Component
100%
Material Science
Beryllium
100%
Secondary Ion Mass Spectrometry
100%
Surface (Surface Science)
100%
Physics
Laser-Induced Breakdown Spectroscopy
100%
Line Spectra
33%
Plasma Facing Component
16%
Machine Learning
16%
Secondary Ion Mass Spectrometry
16%
Fusion Reactor
16%
Blood Plasma
16%
Chemistry
Laser Induced Breakdown Spectroscopy
100%
Secondary Ion Mass Spectroscopy
16%
Plasma Facing Component
16%
Beryllium
16%