First Test of Lorentz Violation with a Reactor-based Antineutrino Experiment

First Test of Lorentz Violation with a Reactor-based Antineutrino Experiment
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DOI:
10.1103/physrevd.86.112009
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发表时间:
2012-09
期刊:
影响因子:
5
通讯作者:
D. C. C. Y. Abe-D.-C.-C.-Y.-Abe-103339867;C. Aberle;J. Anjos;M. Bergevin;A. Bernstein;T. Bezerra;L. Bezrukhov;E. Blucher;N. Bowden;C. Buck;J. Busenitz;A. Cabrera;E. Caden;L. Camilleri;R. Carr;M. Cerrada;P. Chang;P. Chimenti;T. Classen;A. Collin;E. Conover;J. Conrad;J. I. Crespo-Anad'on;K. Crum;A. Cucoanes;M. D'Agostino;E. Damon;J. Dawson;S. Dazeley;D. Dietrich;Z. Djurcic;M. Dracos;V. Durand;J. Ebert;Y. Efremenko;M. Elnimr;A. Erickson;M. Fallot;M. Fechner;F. Feilitzsch;J. Felde;V. Fischer;D. Franco;A. Franke;M. Franke;H. Furuta;R. Gama;I. Gil-Botella;L. Giot;M. Goger-Neff;L. Gonzalez;M. Goodman;J. Goon;D. Greiner;N. Haag;S. Habib;C. Hagner;T. Hara;F. Hartmann;J. Haser;A. Hatzikoutelis;T. Hayakawa;M. Hofmann;G. Horton-Smith;M. Ishitsuka;J. Jochum;C. Jollet;C. Jones;F. Kaether;L. Kalousis;Y. Kamyshkov;D. Kaplan;T. Katori;T. Kawasaki;G. Keefer;E. Kemp;H. Kerret;T. Konno;D. Kryn;M. Kuze;T. Lachenmaier;C. Lane;T. Lasserre;A. Letourneau;D. Lhuillier;H. Lima;M. Lindner;J. M. L'opez-Castano;J. LoSecco;B. Lubsandorzhiev;S. Lucht;D. Mckee;J. Maeda;C. Maesano;C. Mariani;J. Maricic;J. Martino;T. Matsubara;G. Mention;A. Meregaglia;M. Meyer;T. Miletić;R. Milincic;H. Miyata;T. Mueller;Y. Nagasaka;K. Nakajima;P. Novella;M. Obolensky;L. Oberauer;A. Onillon;A. Osborn;I. Ostrovskiy;C. Palomares;I. Pepe;S. Perasso;P. Perrin;P. Pfahler;A. Porta;W. Potzel;G. Pronost;J. Reichenbacher;B. Reinhold;A. Remoto;M. Rohling;R. Roncin;S. Roth;B. Rybolt;Y. Sakamoto;R. Santorelli;F. Sato;S. Schonert;Stefan Schoppmann;T. Schwetz;M. Shaevitz;D. Shrestha;J. Sida;V. Sinev;M. Skorokhvatov;E. Smith;J. Spitz;A. Stahl;I. Stancu;L. Stokes;M. Strait;A. Stuken;F. Suekane;S. Sukhotin;T. Sumiyoshi;Y. Sun;K. Terao;A. Tonazzo;M. Toups;H. T. Thi;G. Valdiviesso;C. Veyssière;S. Wagner;H. Watanabe;B. White;C. Wiebusch;L. Winslow;M. Worcester;M. Wurm;E. Yanovitch;F. Yermia;V. Zimmer
D. C. C. Y. Abe-D.-C.-C.-Y.-Abe-103339867;C. Aberle;J. Anjos;M. Bergevin;A. Bernstein;T. Bezerra;L. Bezrukhov;E. Blucher;N. Bowden;C. Buck;J. Busenitz;A. Cabrera;E. Caden;L. Camilleri;R. Carr;M. Cerrada;P. Chang;P. Chimenti;T. Classen;A. Collin;E. Conover;J. Conrad;J. I. Crespo-Anad'on;K. Crum;A. Cucoanes;M. D'Agostino;E. Damon;J. Dawson;S. Dazeley;D. Dietrich;Z. Djurcic;M. Dracos;V. Durand;J. Ebert;Y. Efremenko;M. Elnimr;A. Erickson;M. Fallot;M. Fechner;F. Feilitzsch;J. Felde;V. Fischer;D. Franco;A. Franke;M. Franke;H. Furuta;R. Gama;I. Gil-Botella;L. Giot;M. Goger-Neff;L. Gonzalez;M. Goodman;J. Goon;D. Greiner;N. Haag;S. Habib;C. Hagner;T. Hara;F. Hartmann;J. Haser;A. Hatzikoutelis;T. Hayakawa;M. Hofmann;G. Horton-Smith;M. Ishitsuka;J. Jochum;C. Jollet;C. Jones;F. Kaether;L. Kalousis;Y. Kamyshkov;D. Kaplan;T. Katori;T. Kawasaki;G. Keefer;E. Kemp;H. Kerret;T. Konno;D. Kryn;M. Kuze;T. Lachenmaier;C. Lane;T. Lasserre;A. Letourneau;D. Lhuillier;H. Lima;M. Lindner;J. M. L'opez-Castano;J. LoSecco;B. Lubsandorzhiev;S. Lucht;D. Mckee;J. Maeda;C. Maesano;C. Mariani;J. Maricic;J. Martino;T. Matsubara;G. Mention;A. Meregaglia;M. Meyer;T. Miletić;R. Milincic;H. Miyata;T. Mueller;Y. Nagasaka;K. Nakajima;P. Novella;M. Obolensky;L. Oberauer;A. Onillon;A. Osborn;I. Ostrovskiy;C. Palomares;I. Pepe;S. Perasso;P. Perrin;P. Pfahler;A. Porta;W. Potzel;G. Pronost;J. Reichenbacher;B. Reinhold;A. Remoto;M. Rohling;R. Roncin;S. Roth;B. Rybolt;Y. Sakamoto;R. Santorelli;F. Sato;S. Schonert;Stefan Schoppmann;T. Schwetz;M. Shaevitz;D. Shrestha;J. Sida;V. Sinev;M. Skorokhvatov;E. Smith;J. Spitz;A. Stahl;I. Stancu;L. Stokes;M. Strait;A. Stuken;F. Suekane;S. Sukhotin;T. Sumiyoshi;Y. Sun;K. Terao;A. Tonazzo;M. Toups;H. T. Thi;G. Valdiviesso;C. Veyssière;S. Wagner;H. Watanabe;B. White;C. Wiebusch;L. Winslow;M. Worcester;M. Wurm;E. Yanovitch;F. Yermia;V. Zimmer
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
D. C. C. Y. Abe-D.-C.-C.-Y.-Abe-103339867;C. Aberle;J. Anjos;M. Bergevin;A. Bernstein;T. Bezerra;L. Bezrukhov;E. Blucher;N. Bowden;C. Buck;J. Busenitz;A. Cabrera;E. Caden;L. Camilleri;R. Carr;M. Cerrada;P. Chang;P. Chimenti;T. Classen;A. Collin;E. Conover;J. Conrad;J. I. Crespo-Anad'on;K. Crum;A. Cucoanes;M. D'Agostino;E. Damon;J. Dawson;S. Dazeley;D. Dietrich;Z. Djurcic;M. Dracos;V. Durand;J. Ebert;Y. Efremenko;M. Elnimr;A. Erickson;M. Fallot;M. Fechner;F. Feilitzsch;J. Felde;V. Fischer;D. Franco;A. Franke;M. Franke;H. Furuta;R. Gama;I. Gil-Botella;L. Giot;M. Goger-Neff;L. Gonzalez;M. Goodman;J. Goon;D. Greiner;N. Haag;S. Habib;C. Hagner;T. Hara;F. Hartmann;J. Haser;A. Hatzikoutelis;T. Hayakawa;M. Hofmann;G. Horton-Smith;M. Ishitsuka;J. Jochum;C. Jollet;C. Jones;F. Kaether;L. Kalousis;Y. Kamyshkov;D. Kaplan;T. Katori;T. Kawasaki;G. Keefer;E. Kemp;H. Kerret;T. Konno;D. Kryn;M. Kuze;T. Lachenmaier;C. Lane;T. Lasserre;A. Letourneau;D. Lhuillier;H. Lima;M. Lindner;J. M. L'opez-Castano;J. LoSecco;B. Lubsandorzhiev;S. Lucht;D. Mckee;J. Maeda;C. Maesano;C. Mariani;J. Maricic;J. Martino;T. Matsubara;G. Mention;A. Meregaglia;M. Meyer;T. Miletić;R. Milincic;H. Miyata;T. Mueller;Y. Nagasaka;K. Nakajima;P. Novella;M. Obolensky;L. Oberauer;A. Onillon;A. Osborn;I. Ostrovskiy;C. Palomares;I. Pepe;S. Perasso;P. Perrin;P. Pfahler;A. Porta;W. Potzel;G. Pronost;J. Reichenbacher;B. Reinhold;A. Remoto;M. Rohling;R. Roncin;S. Roth;B. Rybolt;Y. Sakamoto;R. Santorelli;F. Sato;S. Schonert;Stefan Schoppmann;T. Schwetz;M. Shaevitz;D. Shrestha;J. Sida;V. Sinev;M. Skorokhvatov;E. Smith;J. Spitz;A. Stahl;I. Stancu;L. Stokes;M. Strait;A. Stuken;F. Suekane;S. Sukhotin;T. Sumiyoshi;Y. Sun;K. Terao;A. Tonazzo;M. Toups;H. T. Thi;G. Valdiviesso;C. Veyssière;S. Wagner;H. Watanabe;B. White;C. Wiebusch;L. Winslow;M. Worcester;M. Wurm;E. Yanovitch;F. Yermia;V. Zimmer

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我们提出了用双Chooz实验在227.9天的运行中捕获的8249个候选电子反中微子事件来搜索洛伦兹违逆。该分析的特点是寻找事件的恒星时间依赖性,这是使用基于反应堆的反中微子源对洛伦兹不变性的第一次测试。数据中不存在恒星变化,消失结果与恒星时间无关的振荡一致。在标准模型扩展(SME)下,我们设置了与电子和tau风味之间的转移相关的14个洛伦兹违反系数的第一个极限,并设置了与电子和μ介子风味之间的转移相关的两个竞争极限。
We present a search for Lorentz violation with 8249 candidate electron antineutrino events taken by the Double Chooz experiment in 227.9 live days of running. This analysis, featuring a search for a sidereal time dependence of the events, is the first test of Lorentz invariance using a reactor-based antineutrino source. No sidereal variation is present in the data and the disappearance results are consistent with sidereal time independent oscillations. Under the Standard-Model Extension (SME), we set the first limits on fourteen Lorentz violating coefficients associated with transitions between electron and tau flavor, and set two competitive limits associated with transitions between electron and muon flavor.