The formation of the isotopes on the proton-rich side of the valley of stability cannot be ascribed to neutron capture reactions in the r- or s-processes. These nuclei are produced in the p process, which presumably takes place in the explosively burning O/Ne layers of SNe II. At typical temperatures of 2-3 GK, the p nuclei are produced by a complex reaction network via (gamma,n), (gamma,p), (gamma,alpha) and their inverse reactions. So far most of these reactions are not yet accessible to experimental techniques and must, therefore, be inferred by statistical model calculations. At present, the parametrization of these models has to be constrained by measurements on stable proton-rich nuclei. First results for the stellar (n,gamma) cross s...
As a continuation of a systematic study of reactions relevant to astrophysical p-process, the (p,γ) ...
Recent measurements of the nuclear level densities and γ-ray strength functions below the neutron th...
During helium burning in the red giant phase of stellar evolution, nuclei with A>60 are produced ...
The nucleosynthesis of elements beyond iron is dominated by the s and r processes. However, a small ...
: The cross sections of 70 Ge(ff; fl) 74 Se and 144 Sm(ff; fl) 148 Gd reactions have been me...
In an effort to investigate the production of Se-74 in p-process nucleosynthesis, the Ge-74(p,gamma)...
As a continuation of a systematic study of reactions relevant to astrophysical p-process, the (p,gam...
We have investigated the (n,gamma) cross sections of p-process isotopes with the activation techniqu...
As a continuation of a systematic study of reactions relevant to the astrophysical p process, the cr...
Background: Astrophysical models studying the origin of the neutron-deficient p nuclides require kno...
Abstract.: The nucleosynthesis of elements beyond iron is dominated by the s and r processes. Howeve...
A number of naturally occurring, proton-rich nuclides (the p-nuclei) cannot be made in the s- and r-...
Most of the elements heavier than iron are produced through neutron capture reactions in the s- and ...
The p-nuclei are a group of 35 nuclides on the proton-rich side of the valley stability with A>56, w...
The majority of the light elements up to iron (Fe) are formed by successive rounds of thermonuclear ...
As a continuation of a systematic study of reactions relevant to astrophysical p-process, the (p,γ) ...
Recent measurements of the nuclear level densities and γ-ray strength functions below the neutron th...
During helium burning in the red giant phase of stellar evolution, nuclei with A>60 are produced ...
The nucleosynthesis of elements beyond iron is dominated by the s and r processes. However, a small ...
: The cross sections of 70 Ge(ff; fl) 74 Se and 144 Sm(ff; fl) 148 Gd reactions have been me...
In an effort to investigate the production of Se-74 in p-process nucleosynthesis, the Ge-74(p,gamma)...
As a continuation of a systematic study of reactions relevant to astrophysical p-process, the (p,gam...
We have investigated the (n,gamma) cross sections of p-process isotopes with the activation techniqu...
As a continuation of a systematic study of reactions relevant to the astrophysical p process, the cr...
Background: Astrophysical models studying the origin of the neutron-deficient p nuclides require kno...
Abstract.: The nucleosynthesis of elements beyond iron is dominated by the s and r processes. Howeve...
A number of naturally occurring, proton-rich nuclides (the p-nuclei) cannot be made in the s- and r-...
Most of the elements heavier than iron are produced through neutron capture reactions in the s- and ...
The p-nuclei are a group of 35 nuclides on the proton-rich side of the valley stability with A>56, w...
The majority of the light elements up to iron (Fe) are formed by successive rounds of thermonuclear ...
As a continuation of a systematic study of reactions relevant to astrophysical p-process, the (p,γ) ...
Recent measurements of the nuclear level densities and γ-ray strength functions below the neutron th...
During helium burning in the red giant phase of stellar evolution, nuclei with A>60 are produced ...