First measurement of muon neutrino charged-current interactions on hydrocarbon without pions in the final state using multiple detectors with correlated energy spectra at T2K

First measurement of muon neutrino charged-current interactions on hydrocarbon without pions in the final state using multiple detectors with correlated energy spectra at T2K
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使用具有 T2K 相关能谱的多个探测器首次测量最终状态下无介子的碳氢化合物上的 μ 中微子带电电流相互作用

DOI:
10.1103/physrevd.108.112009
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发表时间:
2023
期刊:
影响因子:
5
通讯作者:
Abe K
Abe K
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
Abe K

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本文报道了在T2K下使用多个具有相关能谱的探测器首次测量了无介子的最终态μ子-中微子带电电流相互作用。利用离轴T2K近探测器(ND280)和在轴T2K近探测器(INGRID)收集油气目标的数据,其中微子能谱峰值分别为0.6 GeV和1.1 GeV。相关的中微子通量为减少通量不确定性的影响和研究中微子相互作用的能量依赖性提供了一个机会。将提取的双微分截面与几个蒙特卡罗中微子-核相互作用事件发生器进行了比较,显示了两个探测器之间单独和相关结果的一致性。
This paper reports the first measurement of muon neutrino charged-current interactions without pions in the final state using multiple detectors with correlated energy spectra at T2K. The data was collected on hydrocarbon targets using the off-axis T2K near detector (ND280) and the on-axis T2K near detector (INGRID) with neutrino energy spectra peaked at 0.6 GeV and 1.1 GeV, respectively. The correlated neutrino flux presents an opportunity to reduce the impact of the flux uncertainty and to study the energy dependence of neutrino interactions. The extracted double-differential cross sections are compared to several Monte Carlo neutrino-nucleus interaction event generators showing the agreement between both detectors individually and with the correlated result.
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T2K ND280 离轴 pi 零探测器
影响因子: 1.4
作者:
S. Assylbekov;B. Berger;H. Berns;D. Beznosko;A. Bodek;R. Bradford;N. Buchanan;H. Budd;Y. Caffari;K. Connolly;I. Dankó;R. Das;S. Davis;M. Day;S. Dytman;M. Dziomba;R. Flight;D. Forbush;K. Gilje;D. Hansen;J. Hignight;J. Imber;R. Johnson;C. Jung;V. Kravtsov;P. T. Le;G. López;C. J. Malafis;S. Manly;A. Marino;K. McFarland;C. Mcgrew;C. Metelko;G. Nagashima;D. Naples;B. Nielsen;V. Paolone;P. Paul;W. Qian;K. Ramos;P. Rodrigues;D. Ruterbories;J. Schmidt;J. Schwehr;M. Siyad;J. Steffens;A. Tadepalli;I. Taylor;W. Toki;C. Vanek;D. Warner;A. Weber;R. J.Wilkes;R. J.Wilson;C. Yanagisawa;T. Yuan
通讯作者: T. Yuan
DOI: 10.1088/1748-0221/8/10/p10019
发表时间: 2013-08
影响因子: 1.3
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Dallan;C.Andreopoulos;C.Angelsen;G.J.Barker;G.Barr;S.Bentham;I.Bertram;S.Boyd;K.Briggs;R.G.Calland;J.Carroll;S.L.Cartwright;A.Carver;C.Chavez;G.Christodoulou;J.Coleman;P.Cooke;G.Davies;C.Densham;F. Lodovico;J.Dobson;T.Duboyski;T.Durkin;D.L.Evans;A.Finch;M.Fitton;F.C.Gannaway;A.Grant;N.Grant;S.Grenwood;P.Guzowski;D.Hadley;M.Haigh;P.F.Harrison;A.Hatzikoutelis;T.D.J.Haycock;A.Hyndman;J.Ilic;S.Ives;A.C.Kaboth;V.Kasey;L.Kellet;M.Khaleeq;G.Kogan;L.L.Kormos;M.Lawe;T.B.Lawson;C.Lister;R.P.Litchfield;M.Lockwood;M.Malek;T.Maryon;P.Masliah;K.Mavrokoridis;N.McCauley;I.Mercer;C.Metelko;B.Morgan;J.Morris;A.Muir;M.Murdoch;T.Nicholls;M.Noy;H.M.O'Keeffe;R.A.Owen;D.Payne;G.F.Pearce;J.D.Perkin;E.Poplawska;R.Preece;W.Qian;P.Ratoff;T.Raufer;M.Raymond;M.Reeves;D.Richards;M.Rooney;R.Sacco;S.Sadler;P.Schaack;M.Scott;D.I.Scully;S.Short;M.Siyad;R.Smith;B.Still;P.Sutcliffe;I.J.Taylor;R.Terri;L.F.Thompson;A.Thorley;M.Thorpe;C.Timis;C.Touramanis;M.A.Uchida;Y.Uchida;A.Vacheret;J.F.VanSchalkwyk;O.Veledar;A.V.Waldron;M.A.Ward;G.P.Ward;D.Wark;M.O.Wascko;A.Weber;N.West;L.H.Whitehead;C.Wilkinson;J. Stfc;Daresbury Laboratory;Daresbury;UK.;I. -. London;London;L. University;Lancaster;Queen Mary;U. O. London;Stfc;R. Laboratory;Oxford;U. Liverpool;Liverpool;U. Oxford;U. Sheffield;Sheffield;U. Warwick;Coventry
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T2K中微子实验INGRID中微子束监测仪的设计与建造
DOI: 10.1016/j.nima.2010.02.251
发表时间: 2008
期刊: 2008 IEEE Nuclear Science Symposium Conference Record
影响因子: --
作者:
M. Otani;A. Minamino;K. Nitta;A. Ichikawa;N. Nagai;T. Nakaya;D. Orme;M. Yokoyama;D. Autiero;M. Besnier;C. Bronner;L. Chaussard;Y. Déclais;O. Drapier;O. Ferreira;M. Gonin;F. Moreau;P. Tran
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DOI: 10.1103/physrevd.98.030001
发表时间: 2018-08
期刊: Physical Review D
影响因子: 5
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通讯作者: K. Nakamura;K. Hagiwara;K. Hikasa;H. Murayama;M. Tanabashi;T. Watari;C. Amsler;M. Antonelli