The rate of the hydrogen-burning carbon-nitrogen-oxygen (CNO) cycle is controlled by the slowest process, 14N(p,γ )15O, which proceeds by capture to the ground and several excited states in 15O. Previous extrapolations for the ground state contribution disagreed by a factor 2, corresponding to 15% uncertainty in the total astrophysical S factor. At the Laboratory for Underground Nuclear Astrophysics (LUNA) 400 kV accelerator placed deep underground in the Gran Sasso facility in Italy, a new experiment on ground state capture has been carried out at 317.8, 334.4, and 353.3 keV center-of-mass energy. Systematic corrections have been reduced considerably with respect to previous studies by using a Clover detector and by adopting a relati...
In stars with temperatures above 20*10^6 K, hydrogen burning is dominated by the CNO cycle. Its rate...
Deep underground in Gran Sasso National Laboratory (Italy), at the LUNA facility, the cross section ...
The CNO cycle consists of a set of nuclear reactions that convert hydrogen into helium and releases ...
The rate of the hydrogen-burning carbon-nitrogen-oxygen (CNO) cycle is controlled by the slowest pro...
We report on a new measurement of 14N(p,γ)15O for the ground state capture transition at Ep = 360, 3...
We report on a new measurement of 14N(p,γ)15O for the ground state capture transition at Ep = 360, 3...
The rate of the carbon-nitrogen-oxygen (CNO) cycle of hydrogen burning is controlled by the 14N(p,\u...
In stars, four hydrogen nuclei are converted into a helium nucleus in two competing nuclear fusion p...
The rate of the carbon-nitrogen-oxygen (CNO) cycle of hydrogen burning is controlled by the 14N(p,γ ...
In stars, four hydrogen nuclei are converted into a helium nucleus in two competing nuclear fusion p...
In stars, four hydrogen nuclei are converted into a helium nucleus by two competing nuclear fusion p...
In stars, four hydrogen nuclei are converted into a helium nucleus by two competing nuclear fusion p...
In stars with temperatures above 20*10^6 K, hydrogen burning is dominated by the CNO cycle. Its rate...
Deep underground in Gran Sasso National Laboratory (Italy), at the LUNA facility, the cross section ...
The CNO cycle consists of a set of nuclear reactions that convert hydrogen into helium and releases ...
The rate of the hydrogen-burning carbon-nitrogen-oxygen (CNO) cycle is controlled by the slowest pro...
We report on a new measurement of 14N(p,γ)15O for the ground state capture transition at Ep = 360, 3...
We report on a new measurement of 14N(p,γ)15O for the ground state capture transition at Ep = 360, 3...
The rate of the carbon-nitrogen-oxygen (CNO) cycle of hydrogen burning is controlled by the 14N(p,\u...
In stars, four hydrogen nuclei are converted into a helium nucleus in two competing nuclear fusion p...
The rate of the carbon-nitrogen-oxygen (CNO) cycle of hydrogen burning is controlled by the 14N(p,γ ...
In stars, four hydrogen nuclei are converted into a helium nucleus in two competing nuclear fusion p...
In stars, four hydrogen nuclei are converted into a helium nucleus by two competing nuclear fusion p...
In stars, four hydrogen nuclei are converted into a helium nucleus by two competing nuclear fusion p...
In stars with temperatures above 20*10^6 K, hydrogen burning is dominated by the CNO cycle. Its rate...
Deep underground in Gran Sasso National Laboratory (Italy), at the LUNA facility, the cross section ...
The CNO cycle consists of a set of nuclear reactions that convert hydrogen into helium and releases ...