Cargando…

Performance of a full scale prototype detector at the BR2 reactor for the SoLid experiment

The SoLid collaboration has developed a new detector technology to detect electron anti-neutrinos at close proximity to the Belgian BR2 reactor at surface level. A 288 kg prototype detector was deployed in 2015 and collected data during the operational period of the reactor and during reactor shut-d...

Descripción completa

Detalles Bibliográficos
Autores principales: Abreu, Y., Amhis, Y., Arnold, L., Ban, G., Beaumont, W., Bongrand, M., Boursette, D., Castle, B.C., Clark, K., Coupé, B., Cussans, D., De Roeck, A., D'Hondt, J., Durand, D., Fallot, M., Ghys, L., Giot, L., Guillon, B., Ihantola, S., Janssen, X., Kalcheva, S., Kalousis, L.N., Koonen, E., Labare, M., Lehaut, G., Manzanillas, L., Mermans, J., Michiels, I., Moortgat, C., Newbold, D., Park, J., Pestel, V., Petridis, K., Piñera, I., Pommery, G., Popescu, L., Pronost, G., Rademacker, J., Ryckbosch, D., Ryder, N., Saunders, D., Schune, M.-H., Simard, L., Vacheret, A., Van Dyck, S., Van Mulders, P., van Remortel, N., Vercaemer, S., Verstraeten, M., Weber, A., Yermia, F.
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1748-0221/13/05/P05005
http://cds.cern.ch/record/2304533
_version_ 1780957456767123456
author Abreu, Y.
Amhis, Y.
Arnold, L.
Ban, G.
Beaumont, W.
Bongrand, M.
Boursette, D.
Castle, B.C.
Clark, K.
Coupé, B.
Cussans, D.
De Roeck, A.
D'Hondt, J.
Durand, D.
Fallot, M.
Ghys, L.
Giot, L.
Guillon, B.
Ihantola, S.
Janssen, X.
Kalcheva, S.
Kalousis, L.N.
Koonen, E.
Labare, M.
Lehaut, G.
Manzanillas, L.
Mermans, J.
Michiels, I.
Moortgat, C.
Newbold, D.
Park, J.
Pestel, V.
Petridis, K.
Piñera, I.
Pommery, G.
Popescu, L.
Pronost, G.
Rademacker, J.
Ryckbosch, D.
Ryder, N.
Saunders, D.
Schune, M.-H.
Simard, L.
Vacheret, A.
Van Dyck, S.
Van Mulders, P.
van Remortel, N.
Vercaemer, S.
Verstraeten, M.
Weber, A.
Yermia, F.
author_facet Abreu, Y.
Amhis, Y.
Arnold, L.
Ban, G.
Beaumont, W.
Bongrand, M.
Boursette, D.
Castle, B.C.
Clark, K.
Coupé, B.
Cussans, D.
De Roeck, A.
D'Hondt, J.
Durand, D.
Fallot, M.
Ghys, L.
Giot, L.
Guillon, B.
Ihantola, S.
Janssen, X.
Kalcheva, S.
Kalousis, L.N.
Koonen, E.
Labare, M.
Lehaut, G.
Manzanillas, L.
Mermans, J.
Michiels, I.
Moortgat, C.
Newbold, D.
Park, J.
Pestel, V.
Petridis, K.
Piñera, I.
Pommery, G.
Popescu, L.
Pronost, G.
Rademacker, J.
Ryckbosch, D.
Ryder, N.
Saunders, D.
Schune, M.-H.
Simard, L.
Vacheret, A.
Van Dyck, S.
Van Mulders, P.
van Remortel, N.
Vercaemer, S.
Verstraeten, M.
Weber, A.
Yermia, F.
author_sort Abreu, Y.
collection CERN
description The SoLid collaboration has developed a new detector technology to detect electron anti-neutrinos at close proximity to the Belgian BR2 reactor at surface level. A 288 kg prototype detector was deployed in 2015 and collected data during the operational period of the reactor and during reactor shut-down. Dedicated calibration campaigns were also performed with gamma and neutron sources. This paper describes the construction of the prototype detector with a high control on its proton content and the stability of its operation over a period of several months after deployment at the BR2 reactor site. All detector cells provide sufficient light yields to achieve a target energy resolution of better than 20%/√E(MeV). The capability of the detector to track muons is exploited to equalize the light response of a large number of channels to a precision of 3% and to demonstrate the stability of the energy scale over time. Particle identification based on pulse-shape discrimination is demonstrated with calibration sources. Despite a lower neutron detection efficiency due to triggering constraints, the main backgrounds at the reactor site were determined and taken into account in the shielding strategy for the main experiment. The results obtained with this prototype proved essential in the design optimization of the final detector.
id cern-2304533
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling cern-23045332022-02-13T09:50:55Zdoi:10.1088/1748-0221/13/05/P05005http://cds.cern.ch/record/2304533engAbreu, Y.Amhis, Y.Arnold, L.Ban, G.Beaumont, W.Bongrand, M.Boursette, D.Castle, B.C.Clark, K.Coupé, B.Cussans, D.De Roeck, A.D'Hondt, J.Durand, D.Fallot, M.Ghys, L.Giot, L.Guillon, B.Ihantola, S.Janssen, X.Kalcheva, S.Kalousis, L.N.Koonen, E.Labare, M.Lehaut, G.Manzanillas, L.Mermans, J.Michiels, I.Moortgat, C.Newbold, D.Park, J.Pestel, V.Petridis, K.Piñera, I.Pommery, G.Popescu, L.Pronost, G.Rademacker, J.Ryckbosch, D.Ryder, N.Saunders, D.Schune, M.-H.Simard, L.Vacheret, A.Van Dyck, S.Van Mulders, P.van Remortel, N.Vercaemer, S.Verstraeten, M.Weber, A.Yermia, F.Performance of a full scale prototype detector at the BR2 reactor for the SoLid experimenthep-exParticle Physics - Experimentphysics.ins-detDetectors and Experimental TechniquesThe SoLid collaboration has developed a new detector technology to detect electron anti-neutrinos at close proximity to the Belgian BR2 reactor at surface level. A 288 kg prototype detector was deployed in 2015 and collected data during the operational period of the reactor and during reactor shut-down. Dedicated calibration campaigns were also performed with gamma and neutron sources. This paper describes the construction of the prototype detector with a high control on its proton content and the stability of its operation over a period of several months after deployment at the BR2 reactor site. All detector cells provide sufficient light yields to achieve a target energy resolution of better than 20%/√E(MeV). The capability of the detector to track muons is exploited to equalize the light response of a large number of channels to a precision of 3% and to demonstrate the stability of the energy scale over time. Particle identification based on pulse-shape discrimination is demonstrated with calibration sources. Despite a lower neutron detection efficiency due to triggering constraints, the main backgrounds at the reactor site were determined and taken into account in the shielding strategy for the main experiment. The results obtained with this prototype proved essential in the design optimization of the final detector.The SoLid collaboration has developed a new detector technology to detect electron anti-neutrinos at close proximity to the Belgian BR2 reactor at surface level. A 288$\,$kg prototype detector was deployed in 2015 and collected data during the operational period of the reactor and during reactor shut-down. Dedicated calibration campaigns were also performed with gamma and neutron sources. This paper describes the construction of the prototype detector with a high control on its proton content and the stability of its operation over a period of several months after deployment at the BR2 reactor site. All detector cells provide sufficient light yields to achieve a target energy resolution of better than 20%/$\sqrt{E(MeV)}$. The capability of the detector to track muons is exploited to equalize the light response of a large number of channels to a precision of 3% and to demonstrate the stability of the energy scale over time. Particle identification based on pulse-shape discrimination is demonstrated with calibration sources. Despite a lower neutron detection efficiency due to triggering constraints, the main backgrounds at the reactor site were determined and taken into account in the shielding strategy for the main experiment. The results obtained with this prototype proved essential in the design optimization of the final detector. This paper is dedicated to our SCK$\cdot$CEN colleague, Edgar Koonen, who passed away unexpectedly in 2017. Edgar was part of the SoLid collaboration since its inception and his efforts were vital to get the experiment started. He will be duly missed.arXiv:1802.02884oai:cds.cern.ch:23045332018-02-08
spellingShingle hep-ex
Particle Physics - Experiment
physics.ins-det
Detectors and Experimental Techniques
Abreu, Y.
Amhis, Y.
Arnold, L.
Ban, G.
Beaumont, W.
Bongrand, M.
Boursette, D.
Castle, B.C.
Clark, K.
Coupé, B.
Cussans, D.
De Roeck, A.
D'Hondt, J.
Durand, D.
Fallot, M.
Ghys, L.
Giot, L.
Guillon, B.
Ihantola, S.
Janssen, X.
Kalcheva, S.
Kalousis, L.N.
Koonen, E.
Labare, M.
Lehaut, G.
Manzanillas, L.
Mermans, J.
Michiels, I.
Moortgat, C.
Newbold, D.
Park, J.
Pestel, V.
Petridis, K.
Piñera, I.
Pommery, G.
Popescu, L.
Pronost, G.
Rademacker, J.
Ryckbosch, D.
Ryder, N.
Saunders, D.
Schune, M.-H.
Simard, L.
Vacheret, A.
Van Dyck, S.
Van Mulders, P.
van Remortel, N.
Vercaemer, S.
Verstraeten, M.
Weber, A.
Yermia, F.
Performance of a full scale prototype detector at the BR2 reactor for the SoLid experiment
title Performance of a full scale prototype detector at the BR2 reactor for the SoLid experiment
title_full Performance of a full scale prototype detector at the BR2 reactor for the SoLid experiment
title_fullStr Performance of a full scale prototype detector at the BR2 reactor for the SoLid experiment
title_full_unstemmed Performance of a full scale prototype detector at the BR2 reactor for the SoLid experiment
title_short Performance of a full scale prototype detector at the BR2 reactor for the SoLid experiment
title_sort performance of a full scale prototype detector at the br2 reactor for the solid experiment
topic hep-ex
Particle Physics - Experiment
physics.ins-det
Detectors and Experimental Techniques
url https://dx.doi.org/10.1088/1748-0221/13/05/P05005
http://cds.cern.ch/record/2304533
work_keys_str_mv AT abreuy performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT amhisy performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT arnoldl performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT bang performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT beaumontw performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT bongrandm performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT boursetted performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT castlebc performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT clarkk performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT coupeb performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT cussansd performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT deroecka performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT dhondtj performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT durandd performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT fallotm performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT ghysl performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT giotl performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT guillonb performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT ihantolas performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT janssenx performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT kalchevas performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT kalousisln performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT koonene performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT labarem performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT lehautg performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT manzanillasl performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT mermansj performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT michielsi performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT moortgatc performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT newboldd performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT parkj performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT pestelv performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT petridisk performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT pinerai performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT pommeryg performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT popescul performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT pronostg performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT rademackerj performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT ryckboschd performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT rydern performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT saundersd performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT schunemh performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT simardl performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT vachereta performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT vandycks performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT vanmuldersp performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT vanremorteln performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT vercaemers performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT verstraetenm performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT webera performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment
AT yermiaf performanceofafullscaleprototypedetectoratthebr2reactorforthesolidexperiment