The Solar Neutrino Problem - An Update

نویسندگان

  • Arnon Dar
  • Giora Shaviv
چکیده

The B solar neutrino flux that has recently been measured by SuperKamiokande is consistent with the Ar production rate in Cl at Homestake. The gallium solar neutrino experiments, GALLEX and SAGE, continue to observe Ge production rates in Ga that are consistent with the minimal signal expected from the solar luminosity. The observed B solar neutrino flux is in good agreement with that predicted by the standard solar model of Dar and Shaviv with nuclear reaction rates that are supported by recent measurements of nuclear fusion cross sections at low energies. But, the signals measured by Super-Kamiokande, SAGE and GALLEX leave no room for the contribution from the expected Be solar neutrino flux. This apparent suppression of the Be solar neutrino flux can be explained by neutrino oscillations and the Mikheyev-Smirnov-Wolfenstein effect, although neither a flavor change, nor a terrestrial variation, nor a spectral distortion of the B solar neutrino flux has been observed. Detailed helioseismology data from SOHO and GONG confirm the standard solar model description of the solar core, but helioseismology is insensitive to the fate of Be in the sun and the production rates of Be, CNO and B neutrinos. Thus, helioseismology and the solar neutrino problem do not provide conclusive evidence for neutrino properties beyond the standard electroweak model. The solar neutrino problem may still be an astrophysical problem. The deviations of the experimental results from those predicted by the standard solar models may reflect the approximate nature of our knowledge of nuclear reaction rates and radiation transport in dense stellar plasmas and the approximate nature of solar models. Only future observations of spectral distortions, or terrestrial modulation or flavor change of solar neutrinos in solar neutrino experiments, such as Super-Kamiokande, SNO, Borexino and HELLAZ will be able to establish that neutrino properties beyond the minimal standard electroweak model are responsible for the solar neutrino problem.

برای دانلود رایگان متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

ثبت نام

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

منابع مشابه

Solar neutrinos: where we are and what is next?

Solar neutrinos: where we are and what is next? We summarize the results of solar neutrino experiments and update a solar model independent analysis of solar neutrino data. We discuss the implications of helio-seismology on solar models and predicted solar neutrino fluxes. Finally , we discuss the potential of new experiments for detecting specific signatures of the proposed solutions to the so...

متن کامل

v 2 1 0 A ug 2 00 1 CERN - TH / 2001 - 214 IFIC - 01 - 43 hep - ph / 0108073 Update on Solar and Atmospheric Four - Neutrino Oscillations ∗

In this talk we present the update (including the recent SNO results) of our analysis of the neutrino oscillation solutions of the solar and atmospheric neutrino problems in the framework of four-neutrino mixing where a sterile neutrino is added to the three standard ones and the mass spectra present two separated doublets. Such scenarios allow for simultaneous transitions of solar νe, as well ...

متن کامل

Is bi-maximal mixing compatible with the large angle MSW solution of the solar neutrino problem?

It is shown that the large angle MSW solution of the solar neutrino problem with a bi-maximal neutrino mixing matrix implies an energy-independent suppression of the solar νe flux. The present solar neutrino data exclude this solution of the solar neutrino problem at 99.6% CL.

متن کامل

Constraining neutrino oscillation parameters with current solar and atmospheric data

We analyse the impact of recent solar and atmospheric data in the determination of the neutrino oscillation parameters, taking into account that both the solar νe and the atmospheric νμ may convert to a mixture of active and sterile neutrinos. In addition to the recent SNO neutral current (NC), spectral and day/night data we add the latest 1496day solar and 1489-day atmospheric Super-K neutrino...

متن کامل

Astroparticle physics with solar neutrinos

Solar neutrino experiments observed fluxes smaller than the expectations from the standard solar model. This discrepancy is known as the "solar neutrino problem". Flux measurements by Super-Kamiokande and SNO have demonstrated that the solar neutrino problem is due to neutrino oscillations. Combining the results of all solar neutrino experiments, parameters for solar neutrino oscillations are o...

متن کامل

ذخیره در منابع من


  با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید

عنوان ژورنال:

دوره   شماره 

صفحات  -

تاریخ انتشار 1998