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A Dynamic Solar Core Model: the Deviant Temperatures Approach

1998/08/31 by Attila Grandpierre, Grandpierre, Attila
Physics and Astronomy · #Astrophysics (astro-ph) #FOS: Physical sciences #High Energy Physics - Phenomenology (hep-ph) #astro-ph #hep-ph

paper · pdf · doi:10.48550/arxiv.astro-ph/9808349

subm Phys. Rev. Lett

arxiv created 1998/08/31 · arxiv updated 2009/11/30

Abstract

I derive here a model independent inequality which shows that the problem of the missing beryllium neutrinos of the Sun roots in the fact that the SuperKamiokande contains a term arising from a non-pp,CNO source. First principle physics shows that the non-pp,CNO source is of thermonuclear runaway origin. Several indications suggest that the non-pp,CNO term plays a more significant role in the solar neutrino problems than neutrino oscillations. When removing the over-restricted SSM luminosity constraint, the temperature dependence of the neutrino fluxes is related to pure nuclear physics and follows Φpp ∝ T4 instead of Φpp ∝ T-1/2. The results of the calculations offer solutions to the solar neutrino problems and problems of neutrino oscillations. The dynamic solar model presents predictions to Borexino and SNO measurements. These predictions can serve to distinguish between the MSW and the non-pp,CNO effect. \it PACS numbers|: 26.65.+t, 26.30.+k, 96.60.JW, 95.30.Cq

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