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Recent T2K neutrino oscillation results

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Recent T2K neutrino oscillation results. / T2K Collaboration.
In: Proceedings of Science, Vol. 364, 394, 2019.

Research output: Contribution to Journal/MagazineConference articlepeer-review

Harvard

T2K Collaboration 2019, 'Recent T2K neutrino oscillation results', Proceedings of Science, vol. 364, 394.

APA

T2K Collaboration (2019). Recent T2K neutrino oscillation results. Proceedings of Science, 364, Article 394.

Vancouver

T2K Collaboration. Recent T2K neutrino oscillation results. Proceedings of Science. 2019;364:394.

Author

T2K Collaboration. / Recent T2K neutrino oscillation results. In: Proceedings of Science. 2019 ; Vol. 364.

Bibtex

@article{291ed0535ce34a069f6179ab4eded5fb,
title = "Recent T2K neutrino oscillation results",
abstract = "T2K is a long-baseline neutrino oscillation experiment sited in Japan that explores neutrino oscillations via νµ disappearance measurements and νµ → νe appearance measurements. Neutrino mixing angles and mass differences have been measured under the assumption of both of the possible mass orderings, and constraints have been set on the CP-violating phase δCP. The best-fit results for the mixing angles sin2 θ23 for normal mass ordering and for inverted mass ordering, respectively, are 0.532+0.030−0.037 and 0.532−0.035+0.029, with corresponding mass differences in each case of ∆m232= (2.452+0.071−0.070) ×10−3 eV2 and ∆m213= (2.432−0.071+0.069) ×10−3 eV2. The parameter sin2 θ13 was measured to be 0.0268+0.0055−0.0043 (normal ordering) and 0.0300−0.0050+0.0059 (inverted ordering). The 1σ allowed region for δCPis [−2.509,−1.260] for normal ordering. No region of inverted ordering is included in the 1σ confidence level. In both cases, the CP-conserving values of δCP= 0, π have been excluded at the 2σ level. T2K has seen a small preference for normal ordering over inverted ordering with a Bayes factor of 8.0.",
author = "{T2K Collaboration} and Kormos, {L. L.}",
note = "Publisher Copyright: {\textcopyright} Owned by the author(s) under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (CC BY-NC-ND 4.0).; 2019 European Physical Society Conference on High Energy Physics, EPS-HEP 2019 ; Conference date: 10-07-2019 Through 17-07-2019",
year = "2019",
language = "English",
volume = "364",
journal = "Proceedings of Science",
issn = "1824-8039",
publisher = "Sissa Medialab Srl",

}

RIS

TY - JOUR

T1 - Recent T2K neutrino oscillation results

AU - T2K Collaboration

AU - Kormos, L. L.

N1 - Publisher Copyright: © Owned by the author(s) under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (CC BY-NC-ND 4.0).

PY - 2019

Y1 - 2019

N2 - T2K is a long-baseline neutrino oscillation experiment sited in Japan that explores neutrino oscillations via νµ disappearance measurements and νµ → νe appearance measurements. Neutrino mixing angles and mass differences have been measured under the assumption of both of the possible mass orderings, and constraints have been set on the CP-violating phase δCP. The best-fit results for the mixing angles sin2 θ23 for normal mass ordering and for inverted mass ordering, respectively, are 0.532+0.030−0.037 and 0.532−0.035+0.029, with corresponding mass differences in each case of ∆m232= (2.452+0.071−0.070) ×10−3 eV2 and ∆m213= (2.432−0.071+0.069) ×10−3 eV2. The parameter sin2 θ13 was measured to be 0.0268+0.0055−0.0043 (normal ordering) and 0.0300−0.0050+0.0059 (inverted ordering). The 1σ allowed region for δCPis [−2.509,−1.260] for normal ordering. No region of inverted ordering is included in the 1σ confidence level. In both cases, the CP-conserving values of δCP= 0, π have been excluded at the 2σ level. T2K has seen a small preference for normal ordering over inverted ordering with a Bayes factor of 8.0.

AB - T2K is a long-baseline neutrino oscillation experiment sited in Japan that explores neutrino oscillations via νµ disappearance measurements and νµ → νe appearance measurements. Neutrino mixing angles and mass differences have been measured under the assumption of both of the possible mass orderings, and constraints have been set on the CP-violating phase δCP. The best-fit results for the mixing angles sin2 θ23 for normal mass ordering and for inverted mass ordering, respectively, are 0.532+0.030−0.037 and 0.532−0.035+0.029, with corresponding mass differences in each case of ∆m232= (2.452+0.071−0.070) ×10−3 eV2 and ∆m213= (2.432−0.071+0.069) ×10−3 eV2. The parameter sin2 θ13 was measured to be 0.0268+0.0055−0.0043 (normal ordering) and 0.0300−0.0050+0.0059 (inverted ordering). The 1σ allowed region for δCPis [−2.509,−1.260] for normal ordering. No region of inverted ordering is included in the 1σ confidence level. In both cases, the CP-conserving values of δCP= 0, π have been excluded at the 2σ level. T2K has seen a small preference for normal ordering over inverted ordering with a Bayes factor of 8.0.

UR - http://www.scopus.com/inward/record.url?scp=85098918225&partnerID=8YFLogxK

M3 - Conference article

AN - SCOPUS:85098918225

VL - 364

JO - Proceedings of Science

JF - Proceedings of Science

SN - 1824-8039

M1 - 394

T2 - 2019 European Physical Society Conference on High Energy Physics, EPS-HEP 2019

Y2 - 10 July 2019 through 17 July 2019

ER -