Pith. sign in

REVIEW

Search for a time-varying electron antineutrino signal at Daya Bay

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 1809.04660 v3 pith:BMZEXLKT submitted 2018-09-12 hep-ex

Search for a time-varying electron antineutrino signal at Daya Bay

Daya Bay Collaboration: D. Adey , F. P. An , A. B. Balantekin , H. R. Band , M. Bishai , S. Blyth , D. Cao , G. F. Cao
show 190 more authors
J. Cao J. F. Chang Y. Chang H. S. Chen S. M. Chen Y. Chen Y. X. Chen J. Cheng Z. K. Cheng J. J. Cherwinka M. C. Chu A. Chukanov J. P. Cummings N. Dash F. S. Deng Y. Y. Ding M. V. Diwan T. Dohnal J. Dove M. Dvo\v{r}\'ak D. A. Dwyer M. Gonchar G. H. Gong H. Gong W. Q. Gu J. Y. Guo L. Guo X. H. Guo Y. H. Guo Z. Guo R. W. Hackenburg S. Hans M. He K. M. Heeger Y. K. Heng A. Higuera Y. B. Hsiung B. Z. Hu J. R. Hu T. Hu Z. J. Hu H. X. Huang X. T. Huang Y. B. Huang P. Huber D. E. Jaffe K. L. Jen X. L. Ji X. P. Ji R. A. Johnson D. Jones L. Kang S. H. Kettell L. W. Koerner S. Kohn M. Kramer T. J. Langford K. Lau L. Lebanowski J. Lee J. H. C. Lee R. T. Lei R. Leitner J. K. C. Leung C. Li F. Li H. L. Li Q. J. Li S. Li S. C. Li S. J. Li W. D. Li X. N. Li X. Q. Li Y. F. Li Z. B. Li H. Liang C. J. Lin G. L. Lin S. Lin Y.-C. Lin J. J. Ling J. M. Link L. Littenberg B. R. Littlejohn J. C. Liu J. L. Liu Y. Liu Y. H. Liu C. Lu H. Q. Lu J. S. Lu K. B. Luk X. B. Ma X. Y. Ma Y. Q. Ma Y. Malyshkin C. Marshall D. A. Martinez Caicedo K. T. McDonald R. D. McKeown I. Mitchell L. Mora Lepin J. Napolitano D. Naumov E. Naumova J. P. Ochoa-Ricoux A. Olshevskiy H.-R. Pan J. Park S. Patton V. Pec J. C. Peng L. Pinsky C. S. J. Pun F. Z. Qi M. Qi X. Qian R. M. Qiu N. Raper J. Ren R. Rosero B. Roskovec X. C. Ruan H. Steiner J. L. Sun W. Tang K. Treskov W.-H. Tse C. E. Tull N. Viaux B. Viren V. Vorobel C. H. Wang J. Wang M. Wang N. Y. Wang R. G. Wang W. Wang X. Wang Y. F. Wang Z. Wang Z. M. Wang H. Y. Wei L. H. Wei L. J. Wen K. Whisnant C. G. White T. Wise H. L. H. Wong S. C. F. Wong E. Worcester Q. Wu W. J. Wu D. M. Xia Z. Z. Xing J. L. Xu T. Xue C. G. Yang L. Yang M. S. Yang Y. Z. Yang M. Ye M. Yeh B. L. Young H. Z. Yu Z. Y. Yu B. B. Yue S. Zeng L. Zhan C. Zhang C. C. Zhang F. Y. Zhang H. H. Zhang J. W. Zhang Q. M. Zhang R. Zhang X. F. Zhang X. T. Zhang Y. M. Zhang Y. X. Zhang Y. Y. Zhang Z. C. Zhang Z. J. Zhang Z. P. Zhang Z. Y. Zhang J. Zhao L. Zhou H. L. Zhuang J. H. Zou
This is my paper
classification hep-ex
keywords dayasearchsignalthreetimedaysexperimentexperimental
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
0 comments
Share X Bluesky LinkedIn Reddit HN
abstract

A search for a time-varying $\bar{\nu}_{e}$ signal was performed with 621 days of data acquired by the Daya Bay Reactor Neutrino Experiment over 704 calendar days. The time spectrum of the measured $\overline{\nu}_e$ flux normalized to its prediction was analyzed with a Lomb-Scargle periodogram, which yielded no significant signal for periods ranging from 2 hours to nearly 2 years. The normalized time spectrum was also fit for a sidereal modulation under the Standard Model extension (SME) framework to search for Lorentz and CPT violation (LV-CPTV). Limits were obtained for all six flavor pairs $\bar{e}\bar{\mu}$, $\bar{e}\bar{\tau}$, $\bar{\mu}\bar{\tau}$, $\bar{e}\bar{e},\bar{\mu}\bar{\mu}$ and $\bar{\tau}\bar{\tau}$ by fitting them one at a time, constituting the first experimental constraints on the latter three. Daya Bay's high statistics and unique layout of multiple directions from three pairs of reactors to three experimental halls allowed the simultaneous constraint of individual SME LV-CPTV coefficients without assuming others contribute negligibly, a first for a neutrino experiment.

discussion (0)

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