抄録
Measurements of the π±, K±, and proton double differential yields emitted from the surface of the 90-cm -long carbon target (T2K replica) were performed for the incoming 31GeV/c protons with the NA61/SHINE spectrometer at the CERN SPS using data collected during 2010 run. The double differential π± yields were measured with increased precision compared to the previously published NA61/SHINE results, while the K± and proton yields were obtained for the first time. A strategy for dealing with the dependence of the results on the incoming proton beam profile is proposed. The purpose of these measurements is to reduce significantly the (anti)neutrino flux uncertainty in the T2K long-baseline neutrino experiment by constraining the production of (anti)neutrino ancestors coming from the T2K target.
本文言語 | English |
---|---|
論文番号 | 100 |
ジャーナル | European Physical Journal C |
巻 | 79 |
号 | 2 |
DOI | |
出版ステータス | Published - 2019 2月 1 |
外部発表 | はい |
ASJC Scopus subject areas
- 工学(その他)
- 物理学および天文学(その他)
フィンガープリント
「Measurements of π± , K± and proton double differential yields from the surface of the T2K replica target for incoming 31 GeV/c protons with the NA61/SHINE spectrometer at the CERN SPS: NA61/SHINE Collaboration」の研究トピックを掘り下げます。これらがまとまってユニークなフィンガープリントを構成します。引用スタイル
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In: European Physical Journal C, Vol. 79, No. 2, 100, 01.02.2019.
研究成果: Article › 査読
}
TY - JOUR
T1 - Measurements of π± , K± and proton double differential yields from the surface of the T2K replica target for incoming 31 GeV/c protons with the NA61/SHINE spectrometer at the CERN SPS
T2 - NA61/SHINE Collaboration
AU - Abgrall, N.
AU - Aduszkiewicz, A.
AU - Andronov, E. V.
AU - Antićić, T.
AU - Baatar, B.
AU - Baszczyk, M.
AU - Bhosale, S.
AU - Blondel, A.
AU - Bogomilov, M.
AU - Brandin, A.
AU - Bravar, A.
AU - Bryliński, W.
AU - Brzychczyk, J.
AU - Bunyatov, S. A.
AU - Busygina, O.
AU - Bzdak, A.
AU - Cherif, H.
AU - Ćirković, M.
AU - Czopowicz, T.
AU - Damyanova, A.
AU - Davis, N.
AU - Deveaux, M.
AU - Dominik, W.
AU - Dorosz, P.
AU - Dumarchez, J.
AU - Engel, R.
AU - Ereditato, A.
AU - Feofilov, G. A.
AU - Fields, L.
AU - Fodor, Z.
AU - Garibov, A.
AU - Gaździcki, M.
AU - Golosov, O.
AU - Golubeva, M.
AU - Grebieszkow, K.
AU - Guber, F.
AU - Haesler, A.
AU - Hasegawa, T.
AU - Hervé, A. E.
AU - Igolkin, S. N.
AU - Ilieva, S.
AU - Ivashkin, A.
AU - Johnson, S. R.
AU - Kadija, K.
AU - Kaptur, E.
AU - Kargin, N.
AU - Kashirin, E.
AU - Kiełbowicz, M.
AU - Kireyeu, V. A.
AU - Klochkov, V.
AU - Kobayashi, T.
AU - Kolesnikov, V. I.
AU - Kolev, D.
AU - Korzenev, A.
AU - Kovalenko, V. N.
AU - Kowalik, K.
AU - Kowalski, S.
AU - Koziel, M.
AU - Krasnoperov, A.
AU - Kucewicz, W.
AU - Kuich, M.
AU - Kurepin, A.
AU - Larsen, D.
AU - László, A.
AU - Lazareva, T. V.
AU - Lewicki, M.
AU - Łojek, K.
AU - Łysakowski, B.
AU - Lyubushkin, V. V.
AU - Maćkowiak-Pawłowska, M.
AU - Majka, Z.
AU - Maksiak, B.
AU - Malakhov, A. I.
AU - Manić, D.
AU - Marchionni, A.
AU - Marcinek, A.
AU - Marino, A. D.
AU - Marton, K.
AU - Mathes, H. J.
AU - Matulewicz, T.
AU - Matveev, V.
AU - Melkumov, G. L.
AU - Merzlaya, A. O.
AU - Messerly, B.
AU - Mik,
AU - Mills, G. B.
AU - Morozov, S.
AU - Mrówczyński, S.
AU - Nagai, Y.
AU - Nakadaira, T.
AU - Naskręt, M.
AU - Nishikawa, K.
AU - Ozvenchuk, V.
AU - Paolone, V.
AU - Pavin, M.
AU - Petukhov, O.
AU - Pistillo, C.
AU - Płaneta, R.
AU - Podlaski, P.
AU - Popov, B. A.
AU - Posiadała-Zezula, M.
AU - Prokhorova, D. S.
AU - Puławski, S.
AU - Puzović, J.
AU - Rauch, W.
AU - Ravonel, M.
AU - Renfordt, R.
AU - Richter-Wąs, E.
AU - Röhrich, D.
AU - Rondio, E.
AU - Roth, M.
AU - Rumberger, B. T.
AU - Rustamov, A.
AU - Rybczynski, M.
AU - Rybicki, A.
AU - Sadovsky, A.
AU - Sakashita, K.
AU - Schmidt, K.
AU - Sekiguchi, T.
AU - Selyuzhenkov, I.
AU - Seryakov, A. Yu
AU - Seyboth, P.
AU - Shibata, M.
AU - Słodkowski, M.
AU - Snoch, A.
AU - Staszel, P.
AU - Stefanek, G.
AU - Stepaniak, J.
AU - Strikhanov, M.
AU - Ströbele, H.
AU - Šuša, T.
AU - Tada, M.
AU - Taranenko, A.
AU - Tefelska, A.
AU - Tefelski, D.
AU - Tereshchenko, V.
AU - Toia, A.
AU - Tsenov, R.
AU - Turko, L.
AU - Ulrich, R.
AU - Unger, M.
AU - Valiev, F. F.
AU - Veberič, D.
AU - Vechernin, V. V.
AU - Walewski, M.
AU - Wickremasinghe, A.
AU - Włodarczyk, Z.
AU - Wojtaszek-Szwarc, A.
AU - Wyszyński, O.
AU - Zambelli, L.
AU - Zimmerman, E. D.
AU - Zwaska, R.
AU - Berns, L.
AU - Fiorentini, G. A.
AU - Friend, M.
AU - Hartz, M.
AU - Vladisavljevic, T.
AU - Yu, M.
N1 - Funding Information: Acknowledgements We would like to thank the CERN EP, BE and EN Departments for the strong support of NA61/SHINE. This work was supported by the Hungarian Scientific Research Fund (Grants NKFIH 123842–123959), the János Bolyai Research Scholarship of the Hungarian Academy of Sciences, the Polish Ministry of Science and Higher Education (Grants 667/N-CERN/2010/ 0, NN 202 48 4339 and NN 202 23 1837), the Polish National Center for Science (grants 2011/03/N/ST2/03691, 2013/11/N/ST2/03879, 2014/13/N/ST2/02565, 2014/14/E/ST2/00018, 2014/15/B/ST2/02537 and 2015/18/M/ST2/00125, 2015/19/N/ST2 /01689, 2016/23/B/ST2/ 00692, UMO-2014/15/B/ST2/03752), the Russian Science Foundation, grant 16-12-10176, the Russian Academy of Science and the Russian Foundation for Basic Research (Grants 08-02-00018, 09-02-00664 and 12-02-91503-CERN), the Ministry of Science and Education of the Russian Federation, Grant No. 3.3380.2017/4.6, the National Research Nuclear University MEPhI in the framework of the Russian Academic Excellence Project (contract No. 02.a03.21.0005, 27.08.2013), the Ministry of Education, Culture, Sports, Science and Technology, Japan, Grant-in-Aid for Scientific Research (grants 18071005, 19034011, 19740162, 20740160 and 20039012), the German Research Foundation (Grant GA 1480/2-2), the Bulgarian Nuclear Regulatory Agency and the Joint Institute for Nuclear Research, Dubna (bilateral contract No. 4418-1-15/17), Bulgarian National Science Fund (Grant DN08/11), Ministry of Education and Science of the Republic of Serbia (grant OI171002), Swiss Nationalfonds Foundation (Grant 200020117913/1), ETH Research Grant TH-01 07-3 and the U.S. Department of Energy. Publisher Copyright: © 2019, The Author(s).
PY - 2019/2/1
Y1 - 2019/2/1
N2 - Measurements of the π±, K±, and proton double differential yields emitted from the surface of the 90-cm -long carbon target (T2K replica) were performed for the incoming 31GeV/c protons with the NA61/SHINE spectrometer at the CERN SPS using data collected during 2010 run. The double differential π± yields were measured with increased precision compared to the previously published NA61/SHINE results, while the K± and proton yields were obtained for the first time. A strategy for dealing with the dependence of the results on the incoming proton beam profile is proposed. The purpose of these measurements is to reduce significantly the (anti)neutrino flux uncertainty in the T2K long-baseline neutrino experiment by constraining the production of (anti)neutrino ancestors coming from the T2K target.
AB - Measurements of the π±, K±, and proton double differential yields emitted from the surface of the 90-cm -long carbon target (T2K replica) were performed for the incoming 31GeV/c protons with the NA61/SHINE spectrometer at the CERN SPS using data collected during 2010 run. The double differential π± yields were measured with increased precision compared to the previously published NA61/SHINE results, while the K± and proton yields were obtained for the first time. A strategy for dealing with the dependence of the results on the incoming proton beam profile is proposed. The purpose of these measurements is to reduce significantly the (anti)neutrino flux uncertainty in the T2K long-baseline neutrino experiment by constraining the production of (anti)neutrino ancestors coming from the T2K target.
UR - http://www.scopus.com/inward/record.url?scp=85060922980&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=85060922980&partnerID=8YFLogxK
U2 - 10.1140/epjc/s10052-019-6583-0
DO - 10.1140/epjc/s10052-019-6583-0
M3 - Article
AN - SCOPUS:85060922980
SN - 1434-6044
VL - 79
JO - European Physical Journal C
JF - European Physical Journal C
IS - 2
M1 - 100
ER -