False-alarm probability in relation to over-sampled power spectra, with application to Super-Kamiokande solar neutrino data
arXiv:1006.0546 · doi:10.1088/0004-637X/718/1/527
Abstract
The term "false-alarm probability" denotes the probability that at least one out of M independent power values in a prescribed search band of a power spectrum computed from a white-noise time series is expected to be as large as or larger than a given value. The usual formula is based on the assumption that powers are distributed exponentially, as one expects for power measurements of normally distributed random noise. However, in practice one typically examines peaks in an over-sampled power spectrum. It is therefore more appropriate to compare the strength of a particular peak with the distribution of peaks in over-sampled power spectra derived from normally distributed random noise. We show that this leads to a formula for the false-alarm probability that is more conservative than the familiar formula. We also show how to combine these results with a Bayesian method for estimating the probability of the null hypothesis (that there is no oscillation in the time series), and we discuss as an example the application of these procedures to Super-Kamiokande solar neutrino data.
References in corpus (6)
- Solar 8B and hep Neutrino Measurements from 1258 Days of Super-Kamiokande Data
- Determination of Solar Neutrino Oscillation Parameters using 1496 Days of Super-Kamiokande-I Data
- Power-Spectrum Analyses of Super-Kamiokande Solar Neutrino Data: Variability and its Implications for Solar Physics and Neutrino Physics
- Combined and Comparative Analysis of Power Spectra
- Evidence for R-Mode Oscillations in Super-Kamiokande Solar Neutrino Data
- A Bayesian Assessment of P-Values for Significance Estimation of Power Spectra and an Alternative Procedure, with Application to Solar Neutrino Data
Cited by in corpus (14)
- H-alpha Activity of Old M Dwarfs: Stellar Cycles and Mean Activity Levels For 93 Low-Mass Stars in the Solar Neighborhood
- The McDonald Observatory Planet Search: New Long-Period Giant Planets, and Two Interacting Jupiters in the HD 155358 System
- A Second Giant Planet in 3:2 Mean-Motion Resonance in the HD 204313 System
- Elemental Abundances of Solar Sibling Candidates
- Secretly Eccentric: The Giant Planet and Activity Cycle of GJ 328
- The Pan-Pacific Planet Search. II. Confirmation of a two-planet system around HD 121056
- Pursuing the planet-debris disk connection: Analysis of upper limits from the Anglo-Australian Planet Search
- Power Spectrum Analysis of Physikalisch-Technische Bundesanstalt Decay-Rate Data: Evidence for Solar Rotational Modulation
- A search for evidence of solar rotation in Super-Kamiokande solar neutrino dataset
- Further Evidence Suggestive of a Solar Influence on Nuclear Decay Rates
- TOI-1696 and TOI-2136: Constraining the Masses of Two Mini-Neptunes with HPF
- A survey of TiOλ567 nm absorption in solar-type stars
- A photospheric and chromospheric activity analysis of the quiescent retrograde-planet host Octantis A
- Discovery of a Nearby Habitable Zone Super-Earth Candidate Amenable to Direct Imaging