Diagnostic setup for investigation of plasma wall interactions at Wendelstein 7-X

  • Olaf Neubauer
  • , Wolfgang Biel
  • , Guntram Czymek
  • , Peter Denner
  • , Florian Effenberg
  • , Andreas Krämer-Flecken
  • , Yunfeng Liang
  • , Oleksandr Marchuk
  • , Guido Offermanns
  • , Michael Rack
  • , Ulrich Samm
  • , Oliver Schmitz
  • , Bernd Schweer
  • , Alexis Terra

Research output: Contribution to journalArticlepeer-review

Abstract

Wendelstein 7-X being the most advanced stellarator is currently prepared for commissioning at Greifswald. Forschungszentrum Jülich is preparing a research programme in the field of plasma wall interactions (PWI) by developing a dedicated set of diagnostic systems. The specific interest at Wendelstein 7-X is to understand PWI processes in presence of a 3D plasma boundary of an island divertor. Furthermore, for the first time steady state plasma at high density and low temperature in the divertor region will be available. Since PWI only could be understood in conjunction with the edge plasma properties the aim of the setup is to observe both the edge plasma as well as surface processes. For optimum combination of different diagnostic methods the edge diagnostic systems are aligned toroidally along one out of five magnetic islands. Main systems are a multipurpose fast probe manipulator, two gas boxes in opposite divertor modules together with two endoscopes each observing the divertor regions, a poloidal correlation reflectometer, a dispersion interferometer in the divertor, and VUV and X-ray spectroscopy in the plasma core. The concept of the diagnostic setup is presented in this paper.

Original languageEnglish (US)
Pages (from-to)891-894
Number of pages4
JournalFusion Engineering and Design
Volume96-97
DOIs
StatePublished - Oct 1 2015
Externally publishedYes

All Science Journal Classification (ASJC) codes

  • Civil and Structural Engineering
  • Nuclear Energy and Engineering
  • General Materials Science
  • Mechanical Engineering

Keywords

  • Diagnostic
  • Island divertor
  • Plasma wall interactions
  • Stellarator

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