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Solar Models: Current Epoch and Time Dependences, Neutrinos, and Helioseismological Properties

John N. BahcallInstitute for Advanced Study, Olden Lane, Princeton, NJ 08540M. H. PinsonneaultDepartment of Astronomy, Ohio State University, Columbus, OH 43210Sarbani BasuAstronomy Department, Yale University, P.O. Box 208101, New Haven, CT 06520-8101
2001en
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We calculate accurate solar models and report the detailed time dependences of important solar quantities. We use helioseismology to constrain the luminosity evolution of the sun and report the discovery of semi-convection in evolved solar models that include diffusion. In addition, we compare the computed sound speeds with the results of p-mode observations by BiSON, GOLF, GONG, LOWL, and MDI instruments. We contrast the neutrino predictions from a set of eight standard-like solar models and four deviant (or deficient) solar models with the results of solar neutrino experiments. For solar neutrino and for helioseismological applications, we present present-epoch numerical tabulations of characteristics of the standard solar model as a function of solar radius, including the principal physical and composition variables, sound speeds, neutrino fluxes, and functions needed for calculating solar neutrino oscillations.

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