Erosion and deposition investigations on Wendelstein 7-X first wall components for the first operation phase in divertor configuration
Author:
Funder
Euratom research and training program
Publisher
Elsevier BV
Subject
Mechanical Engineering,General Materials Science,Nuclear Energy and Engineering,Civil and Structural Engineering
Reference7 articles.
1. Confirmation of the topology of the Wendelstein 7-X magnetic field to better than 1:100 000;Pedersen;Nat. Commun.,2016
2. Major results from the plasma campaign of the Wendestein 7-X stellarator;Wolf;Nucl. Fusion,2017
3. Preparation of erosion and deposition investigations on plasma facing components in Wendelstein 7-X;Dhard;Phys. Scr.,2017
4. Industrial scale 10 μm W coating of CFC tiles for ITER-like wall project at JET;Ruset;Fusion Eng. Des.,2009
5. Elemental depth analysis on Wendelstein 7-X divertor baffle screws by laser-induced breakdown spectroscopy;Li;Nucl. Mater. Energy,2018
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1. Erosion and redeposition pattern on the W7-X graphite test divertor unit tile;Fusion Engineering and Design;2023-06
2. Assessment of carbon net erosion/deposition at the divertor of W7-X;Nuclear Materials and Energy;2023-03
3. Carbon erosion/deposition on the divertor of W7-X during the operational period OP 1.2b;Nuclear Fusion;2022-10-31
4. Using Laser-Induced Breakdown Spectroscopy and Mass Spectrometry to Determine the Retention of Deuterium in Titanium Films;Bulletin of the Russian Academy of Sciences: Physics;2022-05
5. Investigation of boron distribution and material migration on the W7-X divertor by picosecond LIBS;Physica Scripta;2022-01-24
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