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Time – Frequency Analysis of GALLEX and GNO Solar Neutrino Data

机译:GALLEX和GNO太阳中微子数据的时频分析

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Time – frequency analysis of data from the GALLEX and GNO solar neutrino experiments shows that some features in power-spectrum analyses of those datasets are due to aliasing (a result of the fact that run durations tend to be small multiples of one week). Displays formed from the published GALLEX data show a sharp discontinuity that we attribute to some systematic effect. We therefore normalize data for each of the four experiments in the GALLEX series and concatenate the resulting normalized data. This step effectively removes the presumed systematic effect. To help understand the effect of aliasing, we form time – frequency displays of the two principal modulations found in the data, at 11.87 year−1 and at 13.63 year−1. We also form time – frequency displays of datasets formed by subtracting these modulations from the actual (normalized) data. The results suggest that the true principal modulation is that at 11.87 year−1. Comparison with helioseismology data suggests that modulation may be occurring in the core, perhaps resulting from inhomogeneities and fluctuations in the nuclear-burning process, and that the sidereal rotation rate of the core is 12.87 year−1, or 408 nHz.
机译:GALLEX和GNO太阳中微子实验数据的时频分析表明,这些数据集的功率谱分析中的某些功能是由于混叠所致(运行时间往往是一周的较小倍数)。由已发布的GALLEX数据形成的显示显示出明显的不连续性,我们将其归因于某些系统效果。因此,我们将GALLEX系列中四个实验的每一个的数据归一化,并将结果归一化后的数据连接起来。此步骤有效地消除了假定的系统影响。为了帮助理解混叠的影响,我们形成了数据中找到的两个主要调制的时频显示,分别为11.87 year -1 和13.63 year -1 。我们还通过从实际(规范化)数据中减去这些调制而形成的数据集的时频显示。结果表明,真正的主调制是在11.87年 -1 。与流变学数据的比较表明,核中可能发生调制,这可能是由于核燃烧过程的不均匀性和波动引起的,并且核的恒星旋转速率为12.87年 -1 ,或者408赫兹。

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