The influence of the sun could be indirect. Another possibility is that the
sun affects the Higgs field. But like the neutrino flow from the sun, the
Higgs field cannot be screened by experiments held deep underground.



“Bellotti et al. have recently reported the result of measurements

of the activity of a 137Cs source, as determined by an

experiment installed deep underground in the Gran Sasso laboratory

[8], finding no evidence of variability in that dataset.

This result is not inconsistent with our studies to date, which

have shown that (a) not all nuclides exhibit variability; and (b)

among nuclides that do exhibit variability, the patterns of variability

are not all the same.”


On the other hand, the Higgs field may be a candidate for radiation
variation causation.


"The above similarity between the GSI oscillation frequencies and those
found in BNL and PTB data further supports our proposal

that nuclear decay rates are influenced by solar radiation

that is somehow influenced by processes in the deep solar interior.

This leads us to look for a form of radiation that has two

(apparently contradictory) properties: (a) the radiation can traverse

the solar radiative and convection zones (and presumably

the Earth) without being absorbed, and (b) the radiation can be

modulated by processes in the deep solar interior and retain that
modulation in the course of its passage through the solar interior."


This sounds like Higgs to me.






On Tue, Apr 23, 2013 at 4:26 PM, Axil Axil <[email protected]> wrote:

> The LENR reaction may be caused by a long range effect that manifests
> inside or around the nuclear active environment.
>
> All isotopes of nickel who have a spin = 0 are beta decay stable, and
> those that have a spin <> 0 will beta decay.
>
> This leads to the speculation that the intense electric fields inside the
> NAE affect the spin of the nucleus to trigger beta decay.
>
> One indicator that this speculation might be worth considering is that the
> intensity of natural beta and gamma radiation from isotopes is affected by
> the solar environment.
>
> *Analysis of Gamma Radiation from a Radon Source: Indications of a Solar
> Influence*
>
> http://arxiv.org/pdf/1205.0205v1.pdf
>
> It is unlikely that the neutrino production in the sun is this beta decay
> boosting factor. The decay boosting factor may be electromagnetic.
>
> For LENR experimentalists, this would be an interesting slant on LENR
> research.
>
>
>
>

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