A feasibility study of a spectroscopic tomographic diagnostic for the emissivity reconstruction of the plasma parameters in the large negative ion source of the test facility ELISE is described. Tomographic tools are developed to be applied to the measurements of the ELISE optical emission spectroscopy (OES) diagnostic, in order to reconstruct the emissivity distribution from hydrogen (or deuterium) plasma close to the plasma grid, where negative ions are produced and extracted to be accelerated. Various emissivity phantoms, both symmetric and asymmetric, reproducing different plasma experimental conditions have been simulated to test the tomographic algorithm. The simultaneous algebraic reconstruction technique has been applied, accounting for the OES geometrical layout together with a suitable pixel representation. Even with a limited number of 14 lines of sight (LoSs), the plasma emissivity distribution expected on the ELISE source can be successfully reconstructed. In particular, asymmetries in the emissivity pattern can be detected and reproduced with low errors. A systematic investigation of different geometrical layouts of the LoSs as well as of the pixel arrangements has been carried out, and a final configuration has been identified. Noise on the simulated experimental spectroscopic measurements has been tested, confirming the reliability of the adopted tomographic tools for the plasma emissivity reconstructions of the source plasma in ELISE with the actual OES diagnostic system.

Tomography feasibility study on the optical emission spectroscopy diagnostic for the negative ion source of the ELISE test facility

Bonomo F;Agostini M;Brombin M;Pasqualotto R;
2014

Abstract

A feasibility study of a spectroscopic tomographic diagnostic for the emissivity reconstruction of the plasma parameters in the large negative ion source of the test facility ELISE is described. Tomographic tools are developed to be applied to the measurements of the ELISE optical emission spectroscopy (OES) diagnostic, in order to reconstruct the emissivity distribution from hydrogen (or deuterium) plasma close to the plasma grid, where negative ions are produced and extracted to be accelerated. Various emissivity phantoms, both symmetric and asymmetric, reproducing different plasma experimental conditions have been simulated to test the tomographic algorithm. The simultaneous algebraic reconstruction technique has been applied, accounting for the OES geometrical layout together with a suitable pixel representation. Even with a limited number of 14 lines of sight (LoSs), the plasma emissivity distribution expected on the ELISE source can be successfully reconstructed. In particular, asymmetries in the emissivity pattern can be detected and reproduced with low errors. A systematic investigation of different geometrical layouts of the LoSs as well as of the pixel arrangements has been carried out, and a final configuration has been identified. Noise on the simulated experimental spectroscopic measurements has been tested, confirming the reliability of the adopted tomographic tools for the plasma emissivity reconstructions of the source plasma in ELISE with the actual OES diagnostic system.
2014
Istituto gas ionizzati - IGI - Sede Padova
Inglese
56
1
14
http://iopscience.iop.org/0741-3335/56/1/015006/
Sì, ma tipo non specificato
tomography
visible radiation
source plasma
negative ion source
ELISE
ITER neutral beam
X-RAY TOMOGRAPHY
NEUTRAL BEAMS
LIMITED-DATA
RF SOURCE
ALGORITHMS
HYDROGEN
JET
This work was supported by a contract from Fusion for Energy (F4E-2009-OPE-32-01). / Article number: 015006 / Plasma physics and controlled fusion (Online) E-ISSN: 1361-6587 / Bonomo, F (Reprint Author), EURATOM ENEA Assoc, Consorzio RFX, I-35127 Padua, Italy.
4
info:eu-repo/semantics/article
262
Bonomo F.; Agostini M.; Brombin M.; Fantz U.; Franzen P.; Pasqualotto R.; Wuenderlich D.; NNBI Team
01 Contributo su Rivista::01.01 Articolo in rivista
none
   EU Fusion for ITER Applications
   EUFORIA
   FP7
   211804
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/266090
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