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Study of a single line of sight gamma ray diagnostics for measurements of the absolute gamma ray emission from JET

Academic Article
Publication Date:
2021
abstract:
The fusion power produced in a DT thermonuclear reactor is currently determined by measuring the absolute 14 MeV neutron yield of the D(T, ?)n fusion reaction. Measurements of 17 MeV gamma rays born from the much less probable D(T, 5He)? reaction (branching ratio of ~10-5) have been proposed as an alternative independent method to validate the neutron counting method and also to fulfill the requests of the nuclear regulator for licensing ITER DT operations. However, the development of absolute 17 MeV gamma ray emission measurements entails a number of requirements, such as: (i) knowledge of the 17 MeV gamma ray to 14 MeV neutron emission branching ratio; (ii) the simulation of the gamma ray transport from the extended plasma source to the gamma ray detectors; (iii) a careful determination of the absolute efficiency of previously calibrated gamma ray spectrometers. In this work, we have studied the possibility to infer the global gamma ray emission rate from measurements made with a 3? × 6? LaBr3 spectrometer installed at the end of a collimated tangential line of sight at the JET tokamak and using the neutron emission from deuterium plasmas of the most recent experimental campaigns. Results show that 17 MeV gamma ray fluxes at the end of this tangential line of sight have a weak dependence (less than 5%) on the plasma profile and can therefore be used to infer the total emission from the plasma.
Iris type:
01.01 Articolo in rivista
Keywords:
Gamma detectors (scintillators CZT HPGe HgI etc); Nuclear instruments and methods for hot plasma diagnostics; Plasma diagnostics - interferometry spectroscopy and imaging; Plasma diagnostics - probes
List of contributors:
Rigamonti, Davide; Gorini, Giuseppe; Nocente, Massimo; PERELLI CIPPO, Enrico; Rebai, Marica; Tardocchi, Marco
Authors of the University:
PERELLI CIPPO ENRICO
REBAI MARICA
RIGAMONTI DAVIDE
TARDOCCHI MARCO
Handle:
https://iris.cnr.it/handle/20.500.14243/445298
Published in:
JOURNAL OF INSTRUMENTATION
Journal
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URL

https://iopscience.iop.org/article/10.1088/1748-0221/16/12/C12019/meta
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