Hard X-Ray Collimation System at the T-15MD Tokamak

The Hard X-Ray collimation system was installed at the T-15MD tokamak (major radius of R  = 1.48 m, minor radius of a = 0.67 m, elongation of k = 1.7–1.9, triangularity of δ = 0.3–0.4, toroidal magnetic field of B T = 2 T, plasma current of up to I p = 2 MA, and discharge duration of up to 30 s) to...

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Veröffentlicht in:Plasma physics reports 2024-10, Vol.50 (10), p.1189-1197
Hauptverfasser: Tepikin, V. I., Savrukhin, P. V., Shestakov, E. A., Lisovoi, P. D., Khramenkov, A. V., Aristov, A. I.
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Sprache:eng
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Zusammenfassung:The Hard X-Ray collimation system was installed at the T-15MD tokamak (major radius of R  = 1.48 m, minor radius of a = 0.67 m, elongation of k = 1.7–1.9, triangularity of δ = 0.3–0.4, toroidal magnetic field of B T = 2 T, plasma current of up to I p = 2 MA, and discharge duration of up to 30 s) to provide the possibility of measuring the spatial and temporal evolution of runaway electron beams. The diagnostic is based on LaBr 3 (Ce) scintillation detectors, witch provides energy spectrum measurements for energies form 0.3 to 10 MeV. Monte Carlo simulation of the shielding efficiency in the GEANT4 environment showed that the collimator provides 2° field of view (FOV). Horizontal and vertical FOV movement along the plasma cross-section is arranged by a rotating base and screw support elements. An algorithm for processing the signals from the scintillation detectors with a graphical user interface and data visualization is used for reconstruction of the spectra. The results of testing the detector in a laboratory setup and in preliminary experiments carried out with the T-15MD tokamak in which runaway electrons beams were generated are presented.
ISSN:1063-780X
1562-6938
DOI:10.1134/S1063780X24601172