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Search for Lorentz invariance and CPT violation with muon antineutrinos in the MINOS Near Detector

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Search for Lorentz invariance and CPT violation with muon antineutrinos in the MINOS Near Detector. / MINOS Collaboration.
In: Physical Review D – Particles and Fields, Vol. 85, No. 3, 031101, 09.02.2012.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

MINOS Collaboration 2012, 'Search for Lorentz invariance and CPT violation with muon antineutrinos in the MINOS Near Detector', Physical Review D – Particles and Fields, vol. 85, no. 3, 031101. https://doi.org/10.1103/PhysRevD.85.031101

APA

MINOS Collaboration (2012). Search for Lorentz invariance and CPT violation with muon antineutrinos in the MINOS Near Detector. Physical Review D – Particles and Fields, 85(3), Article 031101. https://doi.org/10.1103/PhysRevD.85.031101

Vancouver

MINOS Collaboration. Search for Lorentz invariance and CPT violation with muon antineutrinos in the MINOS Near Detector. Physical Review D – Particles and Fields. 2012 Feb 9;85(3):031101. doi: 10.1103/PhysRevD.85.031101

Author

MINOS Collaboration. / Search for Lorentz invariance and CPT violation with muon antineutrinos in the MINOS Near Detector. In: Physical Review D – Particles and Fields. 2012 ; Vol. 85, No. 3.

Bibtex

@article{dda77424493747cc998c78c48d327b93,
title = "Search for Lorentz invariance and CPT violation with muon antineutrinos in the MINOS Near Detector",
abstract = "We have searched for sidereal variations in the rate of antineutrino interactions in the MINOS Near Detector. Using antineutrinos produced by the NuMI beam, we find no statistically significant sidereal modulation in the rate. When this result is placed in the context of the Standard Model Extension theory we are able to place upper limits on the coefficients defining the theory. These limits are used in combination with the results from an earlier analysis of MINOS neutrino data to further constrain the coefficients.",
keywords = "hep-ex",
author = "P. Adamson and {S. Ayres}, D. and G. Barr and M. Bishai and A. Blake and {J. Bock}, G. and {J. Boehnlein}, D. and D. Bogert and {V. Cao}, S. and S. Cavanaugh and S. Childress and {A. B. Coelho}, J. and L. Corwin and D. Cronin-Hennessy and {Z. Danko}, I. and {K. de Jong}, J. and {E. Devenish}, N. and {V. Diwan}, M. and {O. Escobar}, C. and {J. Evans}, J. and E. Falk and {J. Feldman}, G. and {V. Frohne}, M. and {R. Gallagher}, H. and {A. Gomes}, R. and {C. Goodman}, M. and P. Gouffon and N. Graf and R. Gran and K. Grzelak and A. Habig and J. Hartnell and R. Hatcher and A. Himmel and A. Holin and J. Hylen and {M. Irwin}, G. and Z. Isvan and C. James and D. Jensen and T. Kafka and {M. S. Kasahara}, S. and G. Koizumi and S. Kopp and M. Kordosky and A. Kreymer and K. Lang and J. Ling and {J. Litchfield}, P. and Jaroslaw Nowak and {MINOS Collaboration}",
note = "{\textcopyright} 2012 American Physical Society 6 pages, 2 figures, 4 tables",
year = "2012",
month = feb,
day = "9",
doi = "10.1103/PhysRevD.85.031101",
language = "English",
volume = "85",
journal = "Physical Review D – Particles and Fields",
issn = "1550-2368",
publisher = "American Physical Society",
number = "3",

}

RIS

TY - JOUR

T1 - Search for Lorentz invariance and CPT violation with muon antineutrinos in the MINOS Near Detector

AU - Adamson, P.

AU - S. Ayres, D.

AU - Barr, G.

AU - Bishai, M.

AU - Blake, A.

AU - J. Bock, G.

AU - J. Boehnlein, D.

AU - Bogert, D.

AU - V. Cao, S.

AU - Cavanaugh, S.

AU - Childress, S.

AU - A. B. Coelho, J.

AU - Corwin, L.

AU - Cronin-Hennessy, D.

AU - Z. Danko, I.

AU - K. de Jong, J.

AU - E. Devenish, N.

AU - V. Diwan, M.

AU - O. Escobar, C.

AU - J. Evans, J.

AU - Falk, E.

AU - J. Feldman, G.

AU - V. Frohne, M.

AU - R. Gallagher, H.

AU - A. Gomes, R.

AU - C. Goodman, M.

AU - Gouffon, P.

AU - Graf, N.

AU - Gran, R.

AU - Grzelak, K.

AU - Habig, A.

AU - Hartnell, J.

AU - Hatcher, R.

AU - Himmel, A.

AU - Holin, A.

AU - Hylen, J.

AU - M. Irwin, G.

AU - Isvan, Z.

AU - James, C.

AU - Jensen, D.

AU - Kafka, T.

AU - M. S. Kasahara, S.

AU - Koizumi, G.

AU - Kopp, S.

AU - Kordosky, M.

AU - Kreymer, A.

AU - Lang, K.

AU - Ling, J.

AU - J. Litchfield, P.

AU - Nowak, Jaroslaw

AU - MINOS Collaboration

N1 - © 2012 American Physical Society 6 pages, 2 figures, 4 tables

PY - 2012/2/9

Y1 - 2012/2/9

N2 - We have searched for sidereal variations in the rate of antineutrino interactions in the MINOS Near Detector. Using antineutrinos produced by the NuMI beam, we find no statistically significant sidereal modulation in the rate. When this result is placed in the context of the Standard Model Extension theory we are able to place upper limits on the coefficients defining the theory. These limits are used in combination with the results from an earlier analysis of MINOS neutrino data to further constrain the coefficients.

AB - We have searched for sidereal variations in the rate of antineutrino interactions in the MINOS Near Detector. Using antineutrinos produced by the NuMI beam, we find no statistically significant sidereal modulation in the rate. When this result is placed in the context of the Standard Model Extension theory we are able to place upper limits on the coefficients defining the theory. These limits are used in combination with the results from an earlier analysis of MINOS neutrino data to further constrain the coefficients.

KW - hep-ex

U2 - 10.1103/PhysRevD.85.031101

DO - 10.1103/PhysRevD.85.031101

M3 - Journal article

VL - 85

JO - Physical Review D – Particles and Fields

JF - Physical Review D – Particles and Fields

SN - 1550-2368

IS - 3

M1 - 031101

ER -