Solar neutrino detection is known to be a very challenging task, due to the minuscule absorption cross-section and mass of the neutrino. One research showed that relative large solar-flares affected the decay-rates of Mn-54 in December 2006. Since most the radiation emitted during a solar flare are blocked before reaching the earth surface, it should be assumed that such decay-rate changes could be due to neutrino flux increase from the sun, in which only neutrinos can penetrate the radionuclide. This study employs the Rn-222 radioactive source for the task of solar flare detection, based on the prediction that it will provide a stable gamma ray counting rate. In order to ascertain counting stability, three counting systems were constructe...
More than 40 years ago, neutrinos where conceived as a way to test the validity of the solar models ...
To foresee a solar flare neutrino signal we infer its upper and lower bound. The upper bound was der...
We have studied the radioactive line emission expected from solar active regions after large flares,...
The deacay rate of three different radioactive sources (40K, 137Cs and natTh) has been measured with...
AbstractThe decay rate of three different radioactive sources (40K, 137Cs and natTh) has been measur...
Radon decay rate data from 2007–2011, measured in a closed canister with one gamma counter and two a...
International audienceNeutrinos associated with solar flares (solar-flare neutrinos) provide informa...
International audienceIn response to a reported increase in the total neutrino flux in the Homestake...
The neutrino radiation from the sun can give direct information on the basic nuclear fusion processe...
Pauli postulated the existence of neutrino in the year 1931. This new particle has been introduced i...
A brief review of the solar neutrino observations is given. Future solar neutrino measurements are d...
The potential influence of solar neutrinos on beta decay rates was investigated at PTB. To this end,...
Intense solar flares originated in sun spots produce high energy particles (protons, $\alpha$) well ...
More than 40 years ago, neutrinos where conceived as a way to test the validity of the solar models ...
To foresee a solar flare neutrino signal we infer its upper and lower bound. The upper bound was der...
We have studied the radioactive line emission expected from solar active regions after large flares,...
The deacay rate of three different radioactive sources (40K, 137Cs and natTh) has been measured with...
AbstractThe decay rate of three different radioactive sources (40K, 137Cs and natTh) has been measur...
Radon decay rate data from 2007–2011, measured in a closed canister with one gamma counter and two a...
International audienceNeutrinos associated with solar flares (solar-flare neutrinos) provide informa...
International audienceIn response to a reported increase in the total neutrino flux in the Homestake...
The neutrino radiation from the sun can give direct information on the basic nuclear fusion processe...
Pauli postulated the existence of neutrino in the year 1931. This new particle has been introduced i...
A brief review of the solar neutrino observations is given. Future solar neutrino measurements are d...
The potential influence of solar neutrinos on beta decay rates was investigated at PTB. To this end,...
Intense solar flares originated in sun spots produce high energy particles (protons, $\alpha$) well ...
More than 40 years ago, neutrinos where conceived as a way to test the validity of the solar models ...
To foresee a solar flare neutrino signal we infer its upper and lower bound. The upper bound was der...
We have studied the radioactive line emission expected from solar active regions after large flares,...