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Power-Spectrum Analysis of Super-Kamiokande Solar Neutrino Data, Taking into Account Asymmetry in the Error Estimates

机译:考虑到误差估计中的不对称性,超级神冈天体中微子数据的功率谱分析

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摘要

The purpose of this article is to carry out a power-spectrum analysis of the Super-Kamiokande five-day dataset that takes account of the asymmetry in the error estimates. Whereas for symmetrical error estimates the likelihood analysis involves a linear optimization procedure, for asymmetrical error estimates it involves a nonlinear optimization procedure. For most frequencies there is little difference between the power spectra derived from analyses of symmetrized error estimates and from asymmetrical error estimates, but this is not the case for the principal peak in the power spectrum at 9.43 yr −1. A likelihood analysis that takes account of the error asymmetry leads to a peak with power 13.24 at that frequency, and a Monte Carlo analysis shows that there is a chance of only 0.1% of finding a peak this big or bigger in the search band 1 – 36 yr −1. From this perspective, power-spectrum analysis that takes account of asymmetry of the error estimates gives evidence for variability that is significant at the 99.9% level. We comment briefly on an apparent discrepancy between power-spectrum analyses of the Super-Kamiokande and SNO solar neutrino experiments.
机译:本文的目的是对Super-Kamiokande五天数据集进行功率谱分析,该分析考虑了误差估计中的不对称性。对于对称误差估计,似然分析涉及线性优化过程,而对于非对称误差估计,则涉及非线性优化过程。对于大多数频率,通过对称误差估计分析和非对称误差估计分析得出的功率谱之间几乎没有差异,但是对于功率谱中9.43 yr -1 的主峰却不是这种情况。考虑到误差不对称性的似然分析会在该频率处产生功率为13.24的峰值,而蒙特卡洛分析显示,只有0.1%的机会在搜索频带中找到一个大到大的峰值1 – 36年-1 。从这个角度来看,考虑到误差估计的不对称性的功率谱分析为在99.9%的水平上显着的可变性提供了证据。我们简要评论一下超级神冈号和SNO太阳中微子实验的功率谱分析之间的明显差异。

著录项

  • 来源
    《Solar Physics》 |2006年第1期|1-11|共11页
  • 作者

    P. A. Sturrock; J. D. Scargle;

  • 作者单位

    Center for Space Science and Astrophysics Varian 302 Stanford University;

    NASA/Ames Research Center;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 00:03:20

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