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Forward modeling of collective Thomson scattering for Wendelstein 7-X plasmas: Electrostatic approximation

  • W7-X Team
  • Eindhoven University of Technology
  • Max-Planck-Institut für Plasmaphysik
  • Technical University of Denmark
  • University of Stuttgart
  • CIEMAT
  • Wigner Research Centre for Physics
  • FORSCHUNGSZENTRUM JULICH GMBH
  • University of Maryland, College Park
  • Princeton Plasma Physics Laboratory
  • Los Alamos National Laboratory
  • Lithuanian Energy Institute
  • Massachusetts Institute of Technology
  • University of Wisconsin-Madison
  • Narodowe Centrum Badań Jadrowych
  • KARLSRUHER INSTITUT FUER TECHNOLOGIE
  • The Australian National University
  • University of Cagliari
  • Consorzio Rfx
  • Instituto de Plasmas e Fusao Nuclear
  • Ioffe Physical-Technical Institute of the Russian Academy of Sciences
  • Oak Ridge National Laboratory
  • University of Salerno
  • Warsaw University of Technology
  • ENEA Centro Ricerche Frascati
  • Institute of Plasma Physics and Laser Microfusion
  • Institute of Nuclear Physics PAN
  • University of Szczecin
  • University of Milano-Bicocca
  • University of California, San Diego
  • Auburn University
  • Brandenburg University of Technology Cottbus-Senftenberg
  • National Institute for Fusion Science
  • Universidad Carlos III de Madrid
  • Commissariat à l'Énergie Atomique (CEA)
  • Culham Centre for Fusion Energy
  • Budker Institute of Nuclear Physics (BINP)
  • Fraunhofer-Institut für Schicht- und Oberflächentechnik IST
  • Austrian Academy of Science
  • Institute for Nuclear Research
  • Russian Academy of Science
  • Technical University of Berlin
  • University of Opole
  • Aalto University
  • Physikalisch Technische Bundesanstalt (PTB)
  • Kyoto University
  • Institute of Plasma Physics Chinese Academy of Sciences
  • Institute of Plasma Physics, Academy of Sciences of the Czech Republic
  • Istituto di Fisica del Plasma Piero Caldirola
  • Fraunhofer-Institut für Werkzeugmaschinen und Umformtechnik IWU
  • Universität in Rostock
  • Lawrence University, Appleton
  • CNR

Publikation: Beitrag in FachzeitschriftArtikelBegutachtung

10 Zitate (Scopus)

Abstract

In this paper, we present a method for numerical computation of collective Thomson scattering (CTS). We developed a forward model, eCTS, in the electrostatic approximation and benchmarked it against a full electromagnetic model. Differences between the electrostatic and the electromagnetic models are discussed. The sensitivity of the results to the ion temperature and the plasma composition is demonstrated. We integrated the model into the Bayesian data analysis framework Minerva and used it for the analysis of noisy synthetic data sets produced by a full electromagnetic model. It is shown that eCTS can be used for the inference of the bulk ion temperature. The model has been used to infer the bulk ion temperature from the first CTS measurements on Wendelstein 7-X.

OriginalspracheEnglisch
Aufsatznummer023501
FachzeitschriftReview of Scientific Instruments
Jahrgang90
Ausgabenummer2
DOIs
PublikationsstatusVeröffentlicht - 1 Feb. 2019

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