Measurement of double-differential muon neutrino charged-current interactions on C 8 H 8 without pions in the final state using the T2K off-axis beam

We report the measurement of muon neutrino charged-current interactions on carbon without pions in the final state at the T2K beam energy using 5.734$\times10^{20}$ protons on target. For the first time the measurement is reported as a flux-integrated, double-differential cross-section in muon kinem...

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Veröffentlicht in:Physical review. D 2016-06, Vol.93 (11), Article 112012
Hauptverfasser: Abe, K., Andreopoulos, C., Antonova, M., Aoki, S., Ariga, A., Assylbekov, S., Autiero, D., Barbi, M., Barker, G. J., Barr, G., Bartet-Friburg, P., Batkiewicz, M., Berardi, V., Berkman, S., Bhadra, S., Blondel, A., Bolognesi, S., Bordoni, S., Boyd, S. B., Brailsford, D., Bravar, A., Bronner, C., Buizza Avanzini, M., Calland, R. G., Cao, S., Caravaca Rodríguez, J., Cartwright, S. L., Castillo, R., Catanesi, M. G., Cervera, A., Cherdack, D., Chikuma, N., Christodoulou, G., Clifton, A., Coleman, J., Collazuol, G., Cremonesi, L., Dabrowska, A., De Rosa, G., Dealtry, T., Denner, P. F., Dennis, S. R., Densham, C., Dewhurst, D., Di Lodovico, F., Di Luise, S., Dolan, S., Drapier, O., Duffy, K. E., Dumarchez, J., Dytman, S., Dziewiecki, M., Emery-Schrenk, S., Ereditato, A., Feusels, T., Finch, A. J., Fiorentini, G. A., Friend, M., Fujii, Y., Fukuda, D., Fukuda, Y., Furmanski, A. P., Galymov, V., Garcia, A., Giffin, S. G., Giganti, C., Gizzarelli, F., Gonin, M., Grant, N., Hadley, D. R., Haegel, L., Haigh, M. D., Hamilton, P., Hansen, D., Hara, T., Hartz, M., Hasegawa, T., Hastings, N. C., Hayashino, T., Hayato, Y., Helmer, R. L., Hierholzer, M., Hillairet, A., Himmel, A., Hiraki, T., Hirota, S., Hogan, M., Holeczek, J., Horikawa, S., Hosomi, F., Huang, K., Ichikawa, A. K., Ieki, K., Ikeda, M., Imber, J., Insler, J., Intonti, R. A., Irvine, T. J., Ishida, T., Ishii, T.
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container_issue 11
container_start_page
container_title Physical review. D
container_volume 93
creator Abe, K.
Andreopoulos, C.
Antonova, M.
Aoki, S.
Ariga, A.
Assylbekov, S.
Autiero, D.
Barbi, M.
Barker, G. J.
Barr, G.
Bartet-Friburg, P.
Batkiewicz, M.
Berardi, V.
Berkman, S.
Bhadra, S.
Blondel, A.
Bolognesi, S.
Bordoni, S.
Boyd, S. B.
Brailsford, D.
Bravar, A.
Bronner, C.
Buizza Avanzini, M.
Calland, R. G.
Cao, S.
Caravaca Rodríguez, J.
Cartwright, S. L.
Castillo, R.
Catanesi, M. G.
Cervera, A.
Cherdack, D.
Chikuma, N.
Christodoulou, G.
Clifton, A.
Coleman, J.
Collazuol, G.
Cremonesi, L.
Dabrowska, A.
De Rosa, G.
Dealtry, T.
Denner, P. F.
Dennis, S. R.
Densham, C.
Dewhurst, D.
Di Lodovico, F.
Di Luise, S.
Dolan, S.
Drapier, O.
Duffy, K. E.
Dumarchez, J.
Dytman, S.
Dziewiecki, M.
Emery-Schrenk, S.
Ereditato, A.
Feusels, T.
Finch, A. J.
Fiorentini, G. A.
Friend, M.
Fujii, Y.
Fukuda, D.
Fukuda, Y.
Furmanski, A. P.
Galymov, V.
Garcia, A.
Giffin, S. G.
Giganti, C.
Gizzarelli, F.
Gonin, M.
Grant, N.
Hadley, D. R.
Haegel, L.
Haigh, M. D.
Hamilton, P.
Hansen, D.
Hara, T.
Hartz, M.
Hasegawa, T.
Hastings, N. C.
Hayashino, T.
Hayato, Y.
Helmer, R. L.
Hierholzer, M.
Hillairet, A.
Himmel, A.
Hiraki, T.
Hirota, S.
Hogan, M.
Holeczek, J.
Horikawa, S.
Hosomi, F.
Huang, K.
Ichikawa, A. K.
Ieki, K.
Ikeda, M.
Imber, J.
Insler, J.
Intonti, R. A.
Irvine, T. J.
Ishida, T.
Ishii, T.
description We report the measurement of muon neutrino charged-current interactions on carbon without pions in the final state at the T2K beam energy using 5.734$\times10^{20}$ protons on target. For the first time the measurement is reported as a flux-integrated, double-differential cross-section in muon kinematic variables ($\cos\theta_\mu$, $p_\mu$), without correcting for events where a pion is produced and then absorbed by final state interactions. Two analyses are performed with different selections, background evaluations and cross-section extraction methods to demonstrate the robustness of the results against biases due to model-dependent assumptions. The measurements compare favorably with recent models which include nucleon-nucleon correlations but, given the present precision, the measurement does not solve the degeneracy between different models. The data also agree with Monte Carlo simulations which use effective parameters that are tuned to external data to describe the nuclear effects. The total cross-section in the full phase space is $\sigma = (0.417 \pm 0.047 \text{(syst)} \pm 0.005 \text{(stat)})\times 10^{-38} \text{cm}^2$ $\text{nucleon}^{-1}$ and the cross-section integrated in the region of phase space with largest efficiency and best signal-over-background ratio ($\cos\theta_\mu>0.6$ and $p_\mu > 200$ MeV) is $\sigma = (0.202 \pm 0.0359 \text{(syst)} \pm 0.0026 \text{(stat)}) \times 10^{-38} \text{cm}^2$ $\text{nucleon}^{-1}$.
doi_str_mv 10.1103/PhysRevD.93.112012
format Article
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For the first time the measurement is reported as a flux-integrated, double-differential cross-section in muon kinematic variables ($\cos\theta_\mu$, $p_\mu$), without correcting for events where a pion is produced and then absorbed by final state interactions. Two analyses are performed with different selections, background evaluations and cross-section extraction methods to demonstrate the robustness of the results against biases due to model-dependent assumptions. The measurements compare favorably with recent models which include nucleon-nucleon correlations but, given the present precision, the measurement does not solve the degeneracy between different models. The data also agree with Monte Carlo simulations which use effective parameters that are tuned to external data to describe the nuclear effects. The total cross-section in the full phase space is $\sigma = (0.417 \pm 0.047 \text{(syst)} \pm 0.005 \text{(stat)})\times 10^{-38} \text{cm}^2$ $\text{nucleon}^{-1}$ and the cross-section integrated in the region of phase space with largest efficiency and best signal-over-background ratio ($\cos\theta_\mu&gt;0.6$ and $p_\mu &gt; 200$ MeV) is $\sigma = (0.202 \pm 0.0359 \text{(syst)} \pm 0.0026 \text{(stat)}) \times 10^{-38} \text{cm}^2$ $\text{nucleon}^{-1}$.</description><identifier>ISSN: 2470-0010</identifier><identifier>EISSN: 2470-0029</identifier><identifier>DOI: 10.1103/PhysRevD.93.112012</identifier><language>eng</language><publisher>United States: American Physical Society</publisher><subject>High Energy Physics - Experiment ; Physics</subject><ispartof>Physical review. 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F.</creatorcontrib><creatorcontrib>Gonin, M.</creatorcontrib><creatorcontrib>Grant, N.</creatorcontrib><creatorcontrib>Hadley, D. R.</creatorcontrib><creatorcontrib>Haegel, L.</creatorcontrib><creatorcontrib>Haigh, M. D.</creatorcontrib><creatorcontrib>Hamilton, P.</creatorcontrib><creatorcontrib>Hansen, D.</creatorcontrib><creatorcontrib>Hara, T.</creatorcontrib><creatorcontrib>Hartz, M.</creatorcontrib><creatorcontrib>Hasegawa, T.</creatorcontrib><creatorcontrib>Hastings, N. C.</creatorcontrib><creatorcontrib>Hayashino, T.</creatorcontrib><creatorcontrib>Hayato, Y.</creatorcontrib><creatorcontrib>Helmer, R. L.</creatorcontrib><creatorcontrib>Hierholzer, M.</creatorcontrib><creatorcontrib>Hillairet, A.</creatorcontrib><creatorcontrib>Himmel, A.</creatorcontrib><creatorcontrib>Hiraki, T.</creatorcontrib><creatorcontrib>Hirota, S.</creatorcontrib><creatorcontrib>Hogan, M.</creatorcontrib><creatorcontrib>Holeczek, J.</creatorcontrib><creatorcontrib>Horikawa, S.</creatorcontrib><creatorcontrib>Hosomi, F.</creatorcontrib><creatorcontrib>Huang, K.</creatorcontrib><creatorcontrib>Ichikawa, A. K.</creatorcontrib><creatorcontrib>Ieki, K.</creatorcontrib><creatorcontrib>Ikeda, M.</creatorcontrib><creatorcontrib>Imber, J.</creatorcontrib><creatorcontrib>Insler, J.</creatorcontrib><creatorcontrib>Intonti, R. A.</creatorcontrib><creatorcontrib>Irvine, T. J.</creatorcontrib><creatorcontrib>Ishida, T.</creatorcontrib><creatorcontrib>Ishii, T.</creatorcontrib><creatorcontrib>T2K Collaboration</creatorcontrib><title>Measurement of double-differential muon neutrino charged-current interactions on C 8 H 8 without pions in the final state using the T2K off-axis beam</title><title>Physical review. D</title><description>We report the measurement of muon neutrino charged-current interactions on carbon without pions in the final state at the T2K beam energy using 5.734$\times10^{20}$ protons on target. For the first time the measurement is reported as a flux-integrated, double-differential cross-section in muon kinematic variables ($\cos\theta_\mu$, $p_\mu$), without correcting for events where a pion is produced and then absorbed by final state interactions. Two analyses are performed with different selections, background evaluations and cross-section extraction methods to demonstrate the robustness of the results against biases due to model-dependent assumptions. The measurements compare favorably with recent models which include nucleon-nucleon correlations but, given the present precision, the measurement does not solve the degeneracy between different models. The data also agree with Monte Carlo simulations which use effective parameters that are tuned to external data to describe the nuclear effects. The total cross-section in the full phase space is $\sigma = (0.417 \pm 0.047 \text{(syst)} \pm 0.005 \text{(stat)})\times 10^{-38} \text{cm}^2$ $\text{nucleon}^{-1}$ and the cross-section integrated in the region of phase space with largest efficiency and best signal-over-background ratio ($\cos\theta_\mu&gt;0.6$ and $p_\mu &gt; 200$ MeV) is $\sigma = (0.202 \pm 0.0359 \text{(syst)} \pm 0.0026 \text{(stat)}) \times 10^{-38} \text{cm}^2$ $\text{nucleon}^{-1}$.</description><subject>High Energy Physics - 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Society</general><scope>AAYXX</scope><scope>CITATION</scope><scope>1XC</scope><scope>OTOTI</scope><orcidid>https://orcid.org/0000-0003-2743-4741</orcidid><orcidid>https://orcid.org/0000-0003-1427-7572</orcidid></search><sort><creationdate>20160621</creationdate><title>Measurement of double-differential muon neutrino charged-current interactions on C 8 H 8 without pions in the final state using the T2K off-axis beam</title><author>Abe, K. ; Andreopoulos, C. ; Antonova, M. ; Aoki, S. ; Ariga, A. ; Assylbekov, S. ; Autiero, D. ; Barbi, M. ; Barker, G. J. ; Barr, G. ; Bartet-Friburg, P. ; Batkiewicz, M. ; Berardi, V. ; Berkman, S. ; Bhadra, S. ; Blondel, A. ; Bolognesi, S. ; Bordoni, S. ; Boyd, S. B. ; Brailsford, D. ; Bravar, A. ; Bronner, C. ; Buizza Avanzini, M. ; Calland, R. G. ; Cao, S. ; Caravaca Rodríguez, J. ; Cartwright, S. L. ; Castillo, R. ; Catanesi, M. G. ; Cervera, A. ; Cherdack, D. ; Chikuma, N. ; Christodoulou, G. ; Clifton, A. ; Coleman, J. ; Collazuol, G. ; Cremonesi, L. ; Dabrowska, A. ; De Rosa, G. ; Dealtry, T. ; Denner, P. F. ; Dennis, S. R. ; Densham, C. ; Dewhurst, D. ; Di Lodovico, F. ; Di Luise, S. ; Dolan, S. ; Drapier, O. ; Duffy, K. E. ; Dumarchez, J. ; Dytman, S. ; Dziewiecki, M. ; Emery-Schrenk, S. ; Ereditato, A. ; Feusels, T. ; Finch, A. J. ; Fiorentini, G. A. ; Friend, M. ; Fujii, Y. ; Fukuda, D. ; Fukuda, Y. ; Furmanski, A. P. ; Galymov, V. ; Garcia, A. ; Giffin, S. G. ; Giganti, C. ; Gizzarelli, F. ; Gonin, M. ; Grant, N. ; Hadley, D. R. ; Haegel, L. ; Haigh, M. D. ; Hamilton, P. ; Hansen, D. ; Hara, T. ; Hartz, M. ; Hasegawa, T. ; Hastings, N. C. ; Hayashino, T. ; Hayato, Y. ; Helmer, R. L. ; Hierholzer, M. ; Hillairet, A. ; Himmel, A. ; Hiraki, T. ; Hirota, S. ; Hogan, M. ; Holeczek, J. ; Horikawa, S. ; Hosomi, F. ; Huang, K. ; Ichikawa, A. K. ; Ieki, K. ; Ikeda, M. ; Imber, J. ; Insler, J. ; Intonti, R. A. ; Irvine, T. J. ; Ishida, T. ; Ishii, T.</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c1551-743ff23e52740f0e9750d534e13194182128e28cfa77f3a8c552d46893630ecd3</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2016</creationdate><topic>High Energy Physics - Experiment</topic><topic>Physics</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Abe, K.</creatorcontrib><creatorcontrib>Andreopoulos, C.</creatorcontrib><creatorcontrib>Antonova, M.</creatorcontrib><creatorcontrib>Aoki, S.</creatorcontrib><creatorcontrib>Ariga, A.</creatorcontrib><creatorcontrib>Assylbekov, S.</creatorcontrib><creatorcontrib>Autiero, D.</creatorcontrib><creatorcontrib>Barbi, M.</creatorcontrib><creatorcontrib>Barker, G. J.</creatorcontrib><creatorcontrib>Barr, G.</creatorcontrib><creatorcontrib>Bartet-Friburg, P.</creatorcontrib><creatorcontrib>Batkiewicz, M.</creatorcontrib><creatorcontrib>Berardi, 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T.</creatorcontrib><creatorcontrib>T2K Collaboration</creatorcontrib><collection>CrossRef</collection><collection>Hyper Article en Ligne (HAL)</collection><collection>OSTI.GOV</collection><jtitle>Physical review. D</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Abe, K.</au><au>Andreopoulos, C.</au><au>Antonova, M.</au><au>Aoki, S.</au><au>Ariga, A.</au><au>Assylbekov, S.</au><au>Autiero, D.</au><au>Barbi, M.</au><au>Barker, G. J.</au><au>Barr, G.</au><au>Bartet-Friburg, P.</au><au>Batkiewicz, M.</au><au>Berardi, V.</au><au>Berkman, S.</au><au>Bhadra, S.</au><au>Blondel, A.</au><au>Bolognesi, S.</au><au>Bordoni, S.</au><au>Boyd, S. B.</au><au>Brailsford, D.</au><au>Bravar, A.</au><au>Bronner, C.</au><au>Buizza Avanzini, M.</au><au>Calland, R. G.</au><au>Cao, S.</au><au>Caravaca Rodríguez, J.</au><au>Cartwright, S. L.</au><au>Castillo, R.</au><au>Catanesi, M. G.</au><au>Cervera, A.</au><au>Cherdack, D.</au><au>Chikuma, N.</au><au>Christodoulou, G.</au><au>Clifton, A.</au><au>Coleman, J.</au><au>Collazuol, G.</au><au>Cremonesi, L.</au><au>Dabrowska, A.</au><au>De Rosa, G.</au><au>Dealtry, T.</au><au>Denner, P. F.</au><au>Dennis, S. R.</au><au>Densham, C.</au><au>Dewhurst, D.</au><au>Di Lodovico, F.</au><au>Di Luise, S.</au><au>Dolan, S.</au><au>Drapier, O.</au><au>Duffy, K. E.</au><au>Dumarchez, J.</au><au>Dytman, S.</au><au>Dziewiecki, M.</au><au>Emery-Schrenk, S.</au><au>Ereditato, A.</au><au>Feusels, T.</au><au>Finch, A. J.</au><au>Fiorentini, G. A.</au><au>Friend, M.</au><au>Fujii, Y.</au><au>Fukuda, D.</au><au>Fukuda, Y.</au><au>Furmanski, A. P.</au><au>Galymov, V.</au><au>Garcia, A.</au><au>Giffin, S. G.</au><au>Giganti, C.</au><au>Gizzarelli, F.</au><au>Gonin, M.</au><au>Grant, N.</au><au>Hadley, D. R.</au><au>Haegel, L.</au><au>Haigh, M. D.</au><au>Hamilton, P.</au><au>Hansen, D.</au><au>Hara, T.</au><au>Hartz, M.</au><au>Hasegawa, T.</au><au>Hastings, N. C.</au><au>Hayashino, T.</au><au>Hayato, Y.</au><au>Helmer, R. L.</au><au>Hierholzer, M.</au><au>Hillairet, A.</au><au>Himmel, A.</au><au>Hiraki, T.</au><au>Hirota, S.</au><au>Hogan, M.</au><au>Holeczek, J.</au><au>Horikawa, S.</au><au>Hosomi, F.</au><au>Huang, K.</au><au>Ichikawa, A. K.</au><au>Ieki, K.</au><au>Ikeda, M.</au><au>Imber, J.</au><au>Insler, J.</au><au>Intonti, R. A.</au><au>Irvine, T. J.</au><au>Ishida, T.</au><au>Ishii, T.</au><aucorp>T2K Collaboration</aucorp><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Measurement of double-differential muon neutrino charged-current interactions on C 8 H 8 without pions in the final state using the T2K off-axis beam</atitle><jtitle>Physical review. D</jtitle><date>2016-06-21</date><risdate>2016</risdate><volume>93</volume><issue>11</issue><artnum>112012</artnum><issn>2470-0010</issn><eissn>2470-0029</eissn><abstract>We report the measurement of muon neutrino charged-current interactions on carbon without pions in the final state at the T2K beam energy using 5.734$\times10^{20}$ protons on target. For the first time the measurement is reported as a flux-integrated, double-differential cross-section in muon kinematic variables ($\cos\theta_\mu$, $p_\mu$), without correcting for events where a pion is produced and then absorbed by final state interactions. Two analyses are performed with different selections, background evaluations and cross-section extraction methods to demonstrate the robustness of the results against biases due to model-dependent assumptions. The measurements compare favorably with recent models which include nucleon-nucleon correlations but, given the present precision, the measurement does not solve the degeneracy between different models. The data also agree with Monte Carlo simulations which use effective parameters that are tuned to external data to describe the nuclear effects. The total cross-section in the full phase space is $\sigma = (0.417 \pm 0.047 \text{(syst)} \pm 0.005 \text{(stat)})\times 10^{-38} \text{cm}^2$ $\text{nucleon}^{-1}$ and the cross-section integrated in the region of phase space with largest efficiency and best signal-over-background ratio ($\cos\theta_\mu&gt;0.6$ and $p_\mu &gt; 200$ MeV) is $\sigma = (0.202 \pm 0.0359 \text{(syst)} \pm 0.0026 \text{(stat)}) \times 10^{-38} \text{cm}^2$ $\text{nucleon}^{-1}$.</abstract><cop>United States</cop><pub>American Physical Society</pub><doi>10.1103/PhysRevD.93.112012</doi><orcidid>https://orcid.org/0000-0003-2743-4741</orcidid><orcidid>https://orcid.org/0000-0003-1427-7572</orcidid></addata></record>
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source American Physical Society Journals
subjects High Energy Physics - Experiment
Physics
title Measurement of double-differential muon neutrino charged-current interactions on C 8 H 8 without pions in the final state using the T2K off-axis beam
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