The central solar temperature T and its uncertainties are calculated in helioseismologically-constrained solar models. From the best fit to the convective radius, density at the convective radius and seismically determined helium abundance the central temperature is found to be T=1.58x10^7 K, in excellent agreement with Standard Solar Models. Conservatively, we estimate that the accuracy of this determination is Delta T/T=1.4 %, better than that in SSM. Neutrino fluxes are calculated. The lower limit to the boron neutrino flux, obtained with maximum reduction factors from all sources of uncertainties, is 2 sigma higher than the flux measured recently by SuperKamiokande
While standard solar model (SSM) predictions depend on approximately 20 input parameters, SSM neutri...
We consider a wide class of solar models with mixed core. Most of these models can be excluded as th...
INTRODUCTION The early attempts to explain the so-called solar neutrino problem, i.e., the discrepa...
The central solar temperature T and its uncertainties are calculated in helioseismologically-constra...
The information concerning the variation of sound speed and density inside the Sun as inferred from ...
By comparing neutrino fluxes and central temperatures calculated from 1000 detailed numerical solar ...
A seismic model for the Sun calculated using the accurate helioseismic data predicts a lower $^{8}{B...
Standard solar models (SSMs) constructed in accordance with old solar abundances are in reasonable a...
Imposing a constraint of the sound-speed profile determined from helioseismology and updating the mi...
We review recent advances concerning helioseismology, solar models and solar neutrinos. Particularly...
An inversion of the accurately measured frequencies of solar oscillations leads to a determination o...
We consider the most general solar model, using the neutrino fluxes as free parameters constrained o...
Precise numerical standard solar models (SSMs) now agree with one another and with helioseismologica...
Recent solar neutrino results together with the assumption of a stationary Sun imply severe constrai...
J. Christensen-Dalsgaard W. Däppen (Invité) W. Dziembowski P. Encrenaz (Président) G. Michaud J. Pro...
While standard solar model (SSM) predictions depend on approximately 20 input parameters, SSM neutri...
We consider a wide class of solar models with mixed core. Most of these models can be excluded as th...
INTRODUCTION The early attempts to explain the so-called solar neutrino problem, i.e., the discrepa...
The central solar temperature T and its uncertainties are calculated in helioseismologically-constra...
The information concerning the variation of sound speed and density inside the Sun as inferred from ...
By comparing neutrino fluxes and central temperatures calculated from 1000 detailed numerical solar ...
A seismic model for the Sun calculated using the accurate helioseismic data predicts a lower $^{8}{B...
Standard solar models (SSMs) constructed in accordance with old solar abundances are in reasonable a...
Imposing a constraint of the sound-speed profile determined from helioseismology and updating the mi...
We review recent advances concerning helioseismology, solar models and solar neutrinos. Particularly...
An inversion of the accurately measured frequencies of solar oscillations leads to a determination o...
We consider the most general solar model, using the neutrino fluxes as free parameters constrained o...
Precise numerical standard solar models (SSMs) now agree with one another and with helioseismologica...
Recent solar neutrino results together with the assumption of a stationary Sun imply severe constrai...
J. Christensen-Dalsgaard W. Däppen (Invité) W. Dziembowski P. Encrenaz (Président) G. Michaud J. Pro...
While standard solar model (SSM) predictions depend on approximately 20 input parameters, SSM neutri...
We consider a wide class of solar models with mixed core. Most of these models can be excluded as th...
INTRODUCTION The early attempts to explain the so-called solar neutrino problem, i.e., the discrepa...