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  4. Determination of tungsten sources in the JET-ILW divertor by spectroscopic imaging in the presence of a strong plasma continuum
 
research article

Determination of tungsten sources in the JET-ILW divertor by spectroscopic imaging in the presence of a strong plasma continuum

Huber, A.
•
Brezinsek, S.
•
Kirschner, A.
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January 1, 2019
Nuclear Materials And Energy

The identification of the sources of atomic tungsten and the measurement of their radiation distribution in front of all plasma-facing components has been performed in JET with the help of two digital cameras with the same two-dimensional view, equipped with interference filters of different bandwidths centred on the W I (400.88 nm) emission line. A new algorithm for the subtraction of the continuum radiation was successfully developed and is now used to evaluate the W erosion even in the inner divertor region where the strong recombination emission is dominating over the tungsten emission. Analysis of W sputtering and W redistribution in the divertor by video imaging spectroscopy with high spatial resolution for three different magnetic configurations was performed. A strong variation of the emission of the neutral tungsten in toroidal direction and corresponding W erosion has been observed. It correlates strongly with the wetted area with a maximal W erosion at the edge of the divertor tile.

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Type
research article
DOI
10.1016/j.nme.2018.12.009
Web of Science ID

WOS:000460107500022

Author(s)
Huber, A.
Brezinsek, S.
Kirschner, A.
Strom, P.
Sergienko, G.
Huber, V
Borodkina, I
Douai, D.
Jachmich, S.
Linsmeier, C. H.
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Date Issued

2019-01-01

Published in
Nuclear Materials And Energy
Volume

18

Start page

118

End page

124

Subjects

Nuclear Science & Technology

•

Nuclear Science & Technology

•

tungsten erosion

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tungsten imaging spectroscopy

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w divertor

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jet-ilw

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psi

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pfc

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erosion

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wall

Note

This is an open access article under the terms of the Creative Commons Attribution License

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
SPC  
Available on Infoscience
October 20, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/162130
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