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Experimental Evidence for Physical Reality of Theta Wave by Change in Radionuclide Decay Rates

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TLDR
In this article, the authors inferred the physical reality of de Broglie waves by analysis performed on two independent experiments on radionuclide decay rates, and they reported some experimental setups which are only possible of interpretation if we consider the reality of Theta waves.
Abstract
By analysis performed on two independent experiments on radionuclide decay rates, we inferred the physical reality of de Broglie waves. The unexpected result of a variation of decay rates of 32Si and 226Ra with Earth-Sun inverse squared distance, clearly related with solar neutrino flux, is accounted here as a physical action of de Broglie empty waves. The highly illusive neutrino could not account for that rate change unless we consider them as a quantum particle in the causal and non-linear quantum physics framework. Other experiment here studied relating solar flares and changes in 54Mn decay rate reinforce the assumption that the solar neutrino flux is the reason for that variation, with neutrino as a quantum particle in de Broglie framework. In addiction, over and above of discuss further possibilities to confirm, or not, ours conclusions, we report some experimental setups which is only possible of interpretation if we consider the reality of Theta waves.

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References
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Book

An Introduction to Wavelet Analysis

TL;DR: A comprehensive presentation of the conceptual basis of wavelet analysis, including the construction and analysis of wavelets bases, can be found in this article, along with a detailed exposition of the Haar series.
Book

Nuclei and particles

Emilio Segrè
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Evidence of correlations between nuclear decay rates and Earth–Sun distance

TL;DR: In this paper, the decay rates of 32 Si and 226 Ra have been investigated at Brookhaven National Laboratory (32 Si) and at the Physikalisch-Technische-Bundesanstalt in Germany (226 Ra).
Journal ArticleDOI

Introduction to Wavelet Analysis

TL;DR: An approach that enables the identification of local signal structures--a generalization of wavelet transform called Matching Pursuit--is presented, which offers a possibility of determination of an 'instantaneous frequency' with the accuracy close to the theoretical limit.
Journal ArticleDOI

Half-life of32Si

TL;DR: In this paper, the decay rate was determined from the 32Si/36Cl ratio of counts, based on the analysis of 53 points taken in 48 months, the valueT1/2 = 172(4) yr is adopted for the half-life of 32Si.