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An alternative methodology for high counting-loss corrections in neutron time-of-flight measurements

In counting experiments associated with pulsed sources, a high data collection rate can lead to considerably large counting losses, especially in the case of spallation Time-of-Flight facilities equipped with medium and short flight paths where the research interest is focused on higher neutron ener...

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Autores principales: Stamatopoulos, A, Diakaki, M, Tsinganis, A, Colonna, N, Gunsing, F, Tassan-Got, L, Kokkoris, M, Kalamara, A, Žugec, P, Patronis, N, Sabate-Gilarte, M, Vlastou, R
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nima.2018.10.032
http://cds.cern.ch/record/2665500
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author Stamatopoulos, A
Diakaki, M
Tsinganis, A
Colonna, N
Gunsing, F
Tassan-Got, L
Kokkoris, M
Kalamara, A
Žugec, P
Patronis, N
Sabate-Gilarte, M
Vlastou, R
author_facet Stamatopoulos, A
Diakaki, M
Tsinganis, A
Colonna, N
Gunsing, F
Tassan-Got, L
Kokkoris, M
Kalamara, A
Žugec, P
Patronis, N
Sabate-Gilarte, M
Vlastou, R
author_sort Stamatopoulos, A
collection CERN
description In counting experiments associated with pulsed sources, a high data collection rate can lead to considerably large counting losses, especially in the case of spallation Time-of-Flight facilities equipped with medium and short flight paths where the research interest is focused on higher neutron energies where counting losses can be quite large due to the higher neutron flux, the more compressed time frame compared to the one on lower energies and the higher cross-section depending on the reaction. Examples of such measurements are the neutron induced fission experiments at the new experimental area EAR-2 at the n_TOF facility at CERN. Although analytical expressions to account for this inefficiency exist in literature, the introduced corrections are not always sufficient to retrieve the true reaction rate, therefore a different approach is mandatory. This work explores the possibility to quantify the counting losses using detector emulation devices and exponential fits in waiting time distributions. The methodology is benchmarked in the test case of the standard 238U(n,f) cross-section with reference to 235U(n,f) for bandwidths up to 1.9 MHz and counting losses that exceed 60%.
id oai-inspirehep.net-1704056
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling oai-inspirehep.net-17040562022-08-10T12:20:46Zdoi:10.1016/j.nima.2018.10.032http://cds.cern.ch/record/2665500engStamatopoulos, ADiakaki, MTsinganis, AColonna, NGunsing, FTassan-Got, LKokkoris, MKalamara, AŽugec, PPatronis, NSabate-Gilarte, MVlastou, RAn alternative methodology for high counting-loss corrections in neutron time-of-flight measurementsDetectors and Experimental TechniquesIn counting experiments associated with pulsed sources, a high data collection rate can lead to considerably large counting losses, especially in the case of spallation Time-of-Flight facilities equipped with medium and short flight paths where the research interest is focused on higher neutron energies where counting losses can be quite large due to the higher neutron flux, the more compressed time frame compared to the one on lower energies and the higher cross-section depending on the reaction. Examples of such measurements are the neutron induced fission experiments at the new experimental area EAR-2 at the n_TOF facility at CERN. Although analytical expressions to account for this inefficiency exist in literature, the introduced corrections are not always sufficient to retrieve the true reaction rate, therefore a different approach is mandatory. This work explores the possibility to quantify the counting losses using detector emulation devices and exponential fits in waiting time distributions. The methodology is benchmarked in the test case of the standard 238U(n,f) cross-section with reference to 235U(n,f) for bandwidths up to 1.9 MHz and counting losses that exceed 60%.oai:inspirehep.net:17040562019
spellingShingle Detectors and Experimental Techniques
Stamatopoulos, A
Diakaki, M
Tsinganis, A
Colonna, N
Gunsing, F
Tassan-Got, L
Kokkoris, M
Kalamara, A
Žugec, P
Patronis, N
Sabate-Gilarte, M
Vlastou, R
An alternative methodology for high counting-loss corrections in neutron time-of-flight measurements
title An alternative methodology for high counting-loss corrections in neutron time-of-flight measurements
title_full An alternative methodology for high counting-loss corrections in neutron time-of-flight measurements
title_fullStr An alternative methodology for high counting-loss corrections in neutron time-of-flight measurements
title_full_unstemmed An alternative methodology for high counting-loss corrections in neutron time-of-flight measurements
title_short An alternative methodology for high counting-loss corrections in neutron time-of-flight measurements
title_sort alternative methodology for high counting-loss corrections in neutron time-of-flight measurements
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/j.nima.2018.10.032
http://cds.cern.ch/record/2665500
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