Pith. sign in

REVIEW 4 cited by

The T2K Neutrino Flux Prediction

Not yet reviewed by Pith; the record is open.

This paper has not been read by Pith yet. Machine review is queued; the pith claim, tier, and objections will appear here once it completes.

SPECIMEN: schema-true, not a live event

T0 review · schema-true

One-sentence machine reading of the paper's core claim.

pith:XXXXXXXX · record.json · timestamp

arxiv 1211.0469 v3 pith:4ZFYVXE2 submitted 2012-11-02 hep-ex

The T2K Neutrino Flux Prediction

T2K Collaboration , K. Abe , N. Abgrall , H. Aihara , T. Akiri , J. B. Albert , C. Andreopoulos , S. Aoki
show 344 more authors
A. Ariga T. Ariga S. Assylbekov D. Autiero M. Barbi G. J. Barker G. Barr M. Bass M. Batkiewicz F. Bay S. W. Bentham V. Berardi B. E. Berger S. Berkman I. Bertram D. Beznosko S. Bhadra F. d. M. Blaszczyk A. Blondel C. Bojechko S. Boyd A. Bravar C. Bronner D. G. Brook-Roberge N. Buchanan R. G. Calland J. Caravaca Rodriguez S. L. Cartwright R. Castillo M. G. Catanesi A. Cervera D. Cherdack G. Christodoulou A. Clifton J. Coleman S. J. Coleman G. Collazuol K. Connolly A. Curioni A. Dabrowska I. Danko R. Das S. Davis M. Day J. P. A. M. de Andre P. de Perio G. De Rosa T. Dealtry C. Densham F. Di Lodovico S. Di Luise J. Dobson T. Duboyski F. Dufour J. Dumarchez S. Dytman M. Dziewiecki M. Dziomba S. Emery A. Ereditato L. Escudero L. S. Esposito A. J. Finch E. Frank M. Friend Y. Fujii Y. Fukuda V. Galymov A. Gaudin S. Giffin C. Giganti K. Gilje T. Golan J. J. Gomez-Cadenas M. Gonin N. Grant D. Gudin P. Guzowski D. R. Hadley A. Haesler M. D. Haigh D. Hansen T. Hara M. Hartz T. Hasegawa N. C. Hastings Y. Hayato C. Hearty R. L. Helmer J. Hignight A. Hillairet A. Himmel T. Hiraki J. Holeczek S. Horikawa K. Huang A. Hyndman A. K. Ichikawa K. Ieki M. Ieva M. Ikeda J. Imber J. Insler T. Ishida T. Ishii S. J. Ives K. Iyogi A. Izmaylov B. Jamieson R. A. Johnson J. H. Jo P. Jonsson K. K. Joo G. V. Jover-Manas C. K. Jung H. Kaji T. Kajita H. Kakuno J. Kameda Y. Kanazawa D. Karlen I. Karpikov E. Kearns M. Khabibullin F. Khanam A. Khotjantsev D. Kielczewska T. Kikawa A. Kilinski J. Y. Kim J. Kim S. B. Kim B. Kirby J. Kisiel P. Kitching T. Kobayashi G. Kogan A. Konaka L. L. Kormos A. Korzenev K. Koseki Y. Koshio K. Kowalik I. Kreslo W. Kropp H. Kubo Y. Kudenko S. Kumaratunga R. Kurjata T. Kutter J. Lagoda K. Laihem A. Laing M. Laveder M. Lawe K. P. Lee C. Licciardi I. T. Lim T. Lindner C. Lister R. P. Litchfield A.Longhin G. D. Lopez L. Ludovici M. Macaire L. Magaletti K. Mahn M. Malek S. Manly A. Marchionni A. D. Marino J. Marteau J. F. Martin T. Maruyama J. Marzec P. Masliah E. L. Mathie C. Matsumura K. Matsuoka V. Matveev K. Mavrokoridis E. Mazzucato N. McCauley K. S. McFarland C. McGrew T. McLachlan M. Messina C. Metelko M. Mezzetto P. Mijakowski C. A. Miller A. Minamino O. Mineev S. Mine A. Missert M. Miura L. Monfregola S. Moriyama Th. A. Mueller A. Murakami M. Murdoch S. Murphy J. Myslik T. Nagasaki T. Nakadaira M. Nakahata T. Nakai K. Nakajima K. Nakamura S. Nakayama T. Nakaya K. Nakayoshi D. Naples T. C. Nicholls C. Nielsen K. Nishikawa Y. Nishimura H. M. O'Keeffe Y. Obayashi R. Ohta K. Okumura W. Oryszczak S. M. Oser M. Otani R. A. Owen Y. Oyama M. Y. Pac V. Palladino V. Paolone D. Payne G. F. Pearce O. Perevozchikov J. D. Perkin E. S. Pinzon Guerra P. Plonski E. Poplawska B. Popov M. Posiadala J.-M. Poutissou R. Poutissou P. Przewlocki B. Quilain E. Radicioni P. N. Rato M. Ravonel M. A. Rayner M. Reeves E. Reinherz-Aronis F. Retiere P. A. Rodrigues E. Rondio B. Rossi S. Roth A. Rubbia D. Ruterbories R. Sacco K. Sakashita F. Sanchez E. Scantamburlo K. Scholberg J. Schwehr M. Scott D. I. Scully Y. Seiya T. Sekiguchi H. Sekiya M. Shibata M. Shiozawa S. Short Y. Shustrov P. Sinclair B. Smith R. J. Smith M. Smy J. T. Sobczyk H. Sobel M. Sorel L. Southwell P. Stamoulis J. Steinmann B. Still R. Sulej A. Suzuki K. Suzuki S. Y. Suzuki Y. Suzuki T. Szeglowski M. Szeptycka R. Tacik M. Tada S. Takahashi A. Takeda Y. Takeuchi H. A. Tanaka M. Tanaka M. M. Tanaka I. J. Taylor D. Terhorst R. Terri L. F. Thompson A. Thorley S. Tobayama W. Toki T. Tomura Y. Totsuka C. Touramanis T. Tsukamoto M. Tzanov Y. Uchida K. Ueno A. Vacheret M. Vagins G. Vasseur T. Wachala A. V. Waldron C. W. Walter J. Wang D. Wark M. O. Wascko A. Weber R. Wendell G. Wikstrom R. J. Wilkes M. J. Wilking C. Wilkinson Z. Williamson J. R. Wilson R. J. Wilson T. Wongjirad Y. Yamada K. Yamamoto C. Yanagisawa T. Yano S. Yen N. Yershov M. Yokoyama T. Yuan A. Zalewska L. Zambelli K. Zaremba M. Ziembicki E. D. Zimmerman M. Zito J. Zmuda
This is my paper
classification hep-ex
keywords fluxneutrinonearpredictionbeamdetectorsmeasurementspeak
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
0 comments
read the original abstract

The Tokai-to-Kamioka (T2K) experiment studies neutrino oscillations using an off-axis muon neutrino beam with a peak energy of about 0.6 GeV that originates at the J-PARC accelerator facility. Interactions of the neutrinos are observed at near detectors placed at 280 m from the production target and at the far detector -- Super-Kamiokande (SK) -- located 295 km away. The flux prediction is an essential part of the successful prediction of neutrino interaction rates at the T2K detectors and is an important input to T2K neutrino oscillation and cross section measurements. A FLUKA and GEANT3 based simulation models the physical processes involved in the neutrino production, from the interaction of primary beam protons in the T2K target, to the decay of hadrons and muons that produce neutrinos. The simulation uses proton beam monitor measurements as inputs. The modeling of hadronic interactions is re-weighted using thin target hadron production data, including recent charged pion and kaon measurements from the NA61/SHINE experiment. For the first T2K analyses the uncertainties on the flux prediction are evaluated to be below 15% near the flux peak. The uncertainty on the ratio of the flux predictions at the far and near detectors is less than 2% near the flux peak.

discussion (0)

Sign in with ORCID, Apple, or X to comment. Anyone can read and Pith papers without signing in.

Forward citations

Cited by 4 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Signal selection and model-independent extraction of pionless charged-current muon neutrino cross section using double-differential kinematic imbalance observables on carbon and oxygen with the T2K experiment

    hep-ex 2026-07 accept novelty 6.5

    First joint C/O double-differential νμ CC0πNp cross sections in δpT–δαT and pN–cosθμ show current generators fail to describe the data.

  2. Flow-Based Surrogates for High-Dimensional Likelihoods in Experimental Neutrino Physics

    hep-ex 2026-07 accept novelty 6.0

    A hybrid coupling-plus-autoregressive normalizing flow reproduces a 110-parameter non-Gaussian near-detector likelihood at 98% relative ESS versus ~5% for the post-fit Gaussian, matching MCMC while remaining evaluable...

  3. Flow-Based Surrogates for High-Dimensional Likelihoods in Experimental Neutrino Physics

    hep-ex 2026-07 accept novelty 6.0

    A hybrid coupling-plus-autoregressive normalizing flow trained on a 110-parameter T2K-like near-detector likelihood reaches 98% relative ESS versus 5% for the post-fit Gaussian and matches MCMC flux predictions.

  4. Comparisons of triple-differential cross sections for quasielastic-like $\nu_\mu$-hydrocarbon interactions using $\langle E_\nu\rangle \sim$ 3~GeV versus $\sim$ 6~GeV beams in MINERvA

    hep-ex 2026-05 unverdicted novelty 5.0

    MINERvA compares quasielastic-like cross sections at two neutrino beam energies and finds discrepancies pointing to overestimated final state interactions for protons and pions.