In this work we present a method to evaluate the neutron response function of an NE213 liquid scintillator. This method is particularly useful when the proton light yield function of the detector has not been measured, since it is based on a proton light yield function taken from literature, MCNPX simulations, measurements of gamma-rays from a calibration source and measurements of neutrons from fusion experiments with ohmic plasmas. The inclusion of the latter improves the description of the proton light yield function in the energy range of interest (around 2.46 MeV). We apply this method to an NE213 detector installed at JET, inside the radiation shielding of the magnetic proton recoil (MPRu) spectrometer, and present the results from the calibration along with some examples of application of the response function to perform neutron emission spectroscopy (NES) of fusion plasmas. We also investigate how the choice of the proton light yield function affects the NES analysis, finding that the result does not change significantly. This points to the fact that the method for the evaluation of the neutron response function is robust and gives reliable results

Binda, F., Eriksson, J., Ericsson, G., Hellesen, C., Conroy, S., Nocente, M., et al. (2017). Generation of the neutron response function of an NE213 scintillator for fusion applications. NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH. SECTION A, ACCELERATORS, SPECTROMETERS, DETECTORS AND ASSOCIATED EQUIPMENT, 866, 222-229 [10.1016/j.nima.2017.04.023].

Generation of the neutron response function of an NE213 scintillator for fusion applications

Nocente, M.;
2017

Abstract

In this work we present a method to evaluate the neutron response function of an NE213 liquid scintillator. This method is particularly useful when the proton light yield function of the detector has not been measured, since it is based on a proton light yield function taken from literature, MCNPX simulations, measurements of gamma-rays from a calibration source and measurements of neutrons from fusion experiments with ohmic plasmas. The inclusion of the latter improves the description of the proton light yield function in the energy range of interest (around 2.46 MeV). We apply this method to an NE213 detector installed at JET, inside the radiation shielding of the magnetic proton recoil (MPRu) spectrometer, and present the results from the calibration along with some examples of application of the response function to perform neutron emission spectroscopy (NES) of fusion plasmas. We also investigate how the choice of the proton light yield function affects the NES analysis, finding that the result does not change significantly. This points to the fact that the method for the evaluation of the neutron response function is robust and gives reliable results
Articolo in rivista - Articolo scientifico
NE213 scintillator; Neutron spectroscopy; Proton light yield; Response function; Nuclear and High Energy Physics; Instrumentation
English
2017
866
222
229
none
Binda, F., Eriksson, J., Ericsson, G., Hellesen, C., Conroy, S., Nocente, M., et al. (2017). Generation of the neutron response function of an NE213 scintillator for fusion applications. NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH. SECTION A, ACCELERATORS, SPECTROMETERS, DETECTORS AND ASSOCIATED EQUIPMENT, 866, 222-229 [10.1016/j.nima.2017.04.023].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/179108
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