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Measurement of very forward neutron energy spectra for 7 TeV proton--proton collisions at the Large Hadron Collider

The Large Hadron Collider forward (LHCf) experiment is designed to use the LHC to verify the hadronic-interaction models used in cosmic-ray physics. Forward baryon production is one of the crucial points to understand the development of cosmic-ray showers. We report the neutron-energy spectra for LH...

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Detalles Bibliográficos
Autores principales: Adriani, O., Berti, E., Bonechi, L., Bongi, M., Castellini, G., D'Alessandro, R., Del Prete, M., Haguenauer, M., Itow, Y., Kasahara, K., Kawade, K., Makino, Y., Masuda, K., Matsubayashi, E., Menjo, H., Mitsuka, G., Muraki, Y., Okuno, Y., Papini, P., Perrot, A-L., Ricciarini, S., Sako, T., Sakurai, N., Sugiura, Y., Suzuki, T., Tamura, T., Tiberio, A., Torii, S., Tricomi, A., Turner, W.C., Zhou, Q.D.
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.physletb.2015.09.041
http://cds.cern.ch/record/2001335
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author Adriani, O.
Berti, E.
Bonechi, L.
Bongi, M.
Castellini, G.
D'Alessandro, R.
Del Prete, M.
Haguenauer, M.
Itow, Y.
Kasahara, K.
Kawade, K.
Makino, Y.
Masuda, K.
Matsubayashi, E.
Menjo, H.
Mitsuka, G.
Muraki, Y.
Okuno, Y.
Papini, P.
Perrot, A-L.
Ricciarini, S.
Sako, T.
Sakurai, N.
Sugiura, Y.
Suzuki, T.
Tamura, T.
Tiberio, A.
Torii, S.
Tricomi, A.
Turner, W.C.
Zhou, Q.D.
author_facet Adriani, O.
Berti, E.
Bonechi, L.
Bongi, M.
Castellini, G.
D'Alessandro, R.
Del Prete, M.
Haguenauer, M.
Itow, Y.
Kasahara, K.
Kawade, K.
Makino, Y.
Masuda, K.
Matsubayashi, E.
Menjo, H.
Mitsuka, G.
Muraki, Y.
Okuno, Y.
Papini, P.
Perrot, A-L.
Ricciarini, S.
Sako, T.
Sakurai, N.
Sugiura, Y.
Suzuki, T.
Tamura, T.
Tiberio, A.
Torii, S.
Tricomi, A.
Turner, W.C.
Zhou, Q.D.
author_sort Adriani, O.
collection CERN
description The Large Hadron Collider forward (LHCf) experiment is designed to use the LHC to verify the hadronic-interaction models used in cosmic-ray physics. Forward baryon production is one of the crucial points to understand the development of cosmic-ray showers. We report the neutron-energy spectra for LHC $\sqrt{s}$ = 7 TeV proton--proton collisions with the pseudo-rapidity $\eta$ ranging from 8.81 to 8.99, from 8.99 to 9.22, and from 10.76 to infinity. The measured energy spectra obtained from the two independent calorimeters of Arm1 and Arm2 show the same characteristic feature before unfolding the difference in the detector responses. We unfolded the measured spectra by using the multidimensional unfolding method based on Bayesian theory, and the unfolded spectra were compared with current hadronic-interaction models. The QGSJET II-03 model predicts a high neutron production rate at the highest pseudo-rapidity range similar to our results and the DPMJET 3.04 model describes our results well at the lower pseudo-rapidity ranges. However no model perfectly explains the experimental results in the whole pseudo-rapidity range. The experimental data indicate the most abundant neutron production rate relative to the photon production, which does not agree with predictions of the models.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
record_format invenio
spelling cern-20013352022-08-10T12:57:26Zdoi:10.1016/j.physletb.2015.09.041http://cds.cern.ch/record/2001335engAdriani, O.Berti, E.Bonechi, L.Bongi, M.Castellini, G.D'Alessandro, R.Del Prete, M.Haguenauer, M.Itow, Y.Kasahara, K.Kawade, K.Makino, Y.Masuda, K.Matsubayashi, E.Menjo, H.Mitsuka, G.Muraki, Y.Okuno, Y.Papini, P.Perrot, A-L.Ricciarini, S.Sako, T.Sakurai, N.Sugiura, Y.Suzuki, T.Tamura, T.Tiberio, A.Torii, S.Tricomi, A.Turner, W.C.Zhou, Q.D.Measurement of very forward neutron energy spectra for 7 TeV proton--proton collisions at the Large Hadron ColliderParticle Physics - ExperimentThe Large Hadron Collider forward (LHCf) experiment is designed to use the LHC to verify the hadronic-interaction models used in cosmic-ray physics. Forward baryon production is one of the crucial points to understand the development of cosmic-ray showers. We report the neutron-energy spectra for LHC $\sqrt{s}$ = 7 TeV proton--proton collisions with the pseudo-rapidity $\eta$ ranging from 8.81 to 8.99, from 8.99 to 9.22, and from 10.76 to infinity. The measured energy spectra obtained from the two independent calorimeters of Arm1 and Arm2 show the same characteristic feature before unfolding the difference in the detector responses. We unfolded the measured spectra by using the multidimensional unfolding method based on Bayesian theory, and the unfolded spectra were compared with current hadronic-interaction models. The QGSJET II-03 model predicts a high neutron production rate at the highest pseudo-rapidity range similar to our results and the DPMJET 3.04 model describes our results well at the lower pseudo-rapidity ranges. However no model perfectly explains the experimental results in the whole pseudo-rapidity range. The experimental data indicate the most abundant neutron production rate relative to the photon production, which does not agree with predictions of the models.The Large Hadron Collider forward (LHCf) experiment is designed to use the LHC to verify the hadronic-interaction models used in cosmic-ray physics. Forward baryon production is one of the crucial points to understand the development of cosmic-ray showers. We report the neutron-energy spectra for LHC $\sqrt{s}$=7 TeV proton–proton collisions with the pseudo-rapidity η ranging from 8.81 to 8.99, from 8.99 to 9.22, and from 10.76 to infinity. The measured energy spectra obtained from the two independent calorimeters of Arm1 and Arm2 show the same characteristic feature before unfolding the detector responses. We unfolded the measured spectra by using the multidimensional unfolding method based on Bayesian theory, and the unfolded spectra were compared with current hadronic-interaction models. The QGSJET II-03 model predicts a high neutron production rate at the highest pseudo-rapidity range similar to our results, and the DPMJET 3.04 model describes our results well at the lower pseudo-rapidity ranges. However, no model perfectly explains the experimental results over the entire pseudo-rapidity range. The experimental data indicate a more abundant neutron production rate relative to the photon production than any model predictions studied here.The Large Hadron Collider forward (LHCf) experiment is designed to use the LHC to verify the hadronic-interaction models used in cosmic-ray physics. Forward baryon production is one of the crucial points to understand the development of cosmic-ray showers. We report the neutron-energy spectra for LHC $\sqrt{s}$ = 7 TeV proton--proton collisions with the pseudo-rapidity $\eta$ ranging from 8.81 to 8.99, from 8.99 to 9.22, and from 10.76 to infinity. The measured energy spectra obtained from the two independent calorimeters of Arm1 and Arm2 show the same characteristic feature before unfolding the difference in the detector responses. We unfolded the measured spectra by using the multidimensional unfolding method based on Bayesian theory, and the unfolded spectra were compared with current hadronic-interaction models. The QGSJET II-03 model predicts a high neutron production rate at the highest pseudo-rapidity range similar to our results and the DPMJET 3.04 model describes our results well at the lower pseudo-rapidity ranges. However no model perfectly explains the experimental results in the whole pseudo-rapidity range. The experimental data indicate the most abundant neutron production rate relative to the photon production, which does not agree with predictions of the models.arXiv:1503.03505CERN-PH-EP-DRAFT-LHCF-2015-001CERN-PH-EP-2015-056oai:cds.cern.ch:20013352015-03-11
spellingShingle Particle Physics - Experiment
Adriani, O.
Berti, E.
Bonechi, L.
Bongi, M.
Castellini, G.
D'Alessandro, R.
Del Prete, M.
Haguenauer, M.
Itow, Y.
Kasahara, K.
Kawade, K.
Makino, Y.
Masuda, K.
Matsubayashi, E.
Menjo, H.
Mitsuka, G.
Muraki, Y.
Okuno, Y.
Papini, P.
Perrot, A-L.
Ricciarini, S.
Sako, T.
Sakurai, N.
Sugiura, Y.
Suzuki, T.
Tamura, T.
Tiberio, A.
Torii, S.
Tricomi, A.
Turner, W.C.
Zhou, Q.D.
Measurement of very forward neutron energy spectra for 7 TeV proton--proton collisions at the Large Hadron Collider
title Measurement of very forward neutron energy spectra for 7 TeV proton--proton collisions at the Large Hadron Collider
title_full Measurement of very forward neutron energy spectra for 7 TeV proton--proton collisions at the Large Hadron Collider
title_fullStr Measurement of very forward neutron energy spectra for 7 TeV proton--proton collisions at the Large Hadron Collider
title_full_unstemmed Measurement of very forward neutron energy spectra for 7 TeV proton--proton collisions at the Large Hadron Collider
title_short Measurement of very forward neutron energy spectra for 7 TeV proton--proton collisions at the Large Hadron Collider
title_sort measurement of very forward neutron energy spectra for 7 tev proton--proton collisions at the large hadron collider
topic Particle Physics - Experiment
url https://dx.doi.org/10.1016/j.physletb.2015.09.041
http://cds.cern.ch/record/2001335
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