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Overview on R&D and design activities for the ITER core charge exchange spectroscopy diagnostic system

Authors :
Rje Roger Jaspers
Andrey Litnovsky
P. Bourauel
A. Hogenbirk
G. Kiss
N. C. Hawkes
D. Dunai
J.F. Koning
Vladislav Kotov
K. Patel
Wolfgang Biel
Gergö Pokol
Yury Krasikov
V. Szabó
N. C. J. van der Valk
Anatoly Panin
M. Durkut
Olaf Neubauer
F. Klinkhamer
Gábor Erdei
R. Voinchet
G. Offermanns
T. Baross
Michael Schrader
O. Lischtschenko
S. Zoletnik
B. Snijders
O. Marchuk
J. Wolters
A. Krimmer
M. v.Hellermann
Science and Technology of Nuclear Fusion
Sensorics for fusion reactors
Source :
Fusion Engineering and Design, 6-8, 86, 548-551, Fusion Engineering and Design, 86(6-8), 548-1/4. Elsevier, Fusion Engineering and Design, 86, 548-551
Publication Year :
2011

Abstract

The ITER core charge exchange recombination spectroscopy (core CXRS) diagnostic system is designed to provide experimental access to various measurement quantities in the ITER core plasma such as ion densities, temperatures and velocities. The implementation of the approved CXRS diagnostic principle on ITER faces significant challenges: First, a comparatively low CXRS signal intensity is expected, together with a high noise level due to bremsstrahlung, while the requested measurement accuracy and stability for the core CXRS system go far beyond the level commonly achieved in present-day fusion experiments. Second, the lifetime of the first mirror surface is limited due to either erosion by fast particle bombardment or deposition of impurities. Finally, the hostile technical environment on ITER imposes challenging boundary conditions for the diagnostic integration and operation, including high neutron loads, electromagnetic loads, seismic events and a limited access for maintenance. A brief overview on the R&D and design activities for the core CXRS system is presented here, while the details are described in parallel papers. (C) 2011 Elsevier B.V. All rights reserved.

Details

Language :
English
ISSN :
09203796
Volume :
86
Issue :
6-8
Database :
OpenAIRE
Journal :
Fusion Engineering and Design
Accession number :
edsair.doi.dedup.....5dc924068869e1534b5fc7f23011ac46
Full Text :
https://doi.org/10.1016/j.fusengdes.2011.02.086