One of the greatest questions for modern physics to address is how elements heavier than iron are created in extreme astrophysical environments. A particularly challenging part of that question is the creation of the so-called p-nuclei, which are believed to be mainly produced in some types of supernovae. The lack of needed nuclear data presents an obstacle in nailing down the precise site and astrophysical conditions. In this work, we present for the first time measurements on the nuclear level density and average γ strength function of 92Mo. State-of-the-art p-process calculations systematically underestimate the observed solar abundance of this isotope. Our data provide stringent constraints on the 91Nb(p,γ ) 92Mo reaction rate, which is...
Im Rahmen der vorliegenden Arbeit wurden Photodisintegrationsreaktionen an den Isotopen 92;93;100Mo ...
We present a nucleosynthesis sensitivity study for the γ-process in a Supernova type II model within...
The Coulomb Dissociation (CD) cross sections of the stable isotopes 92,94,100Mo and of the unstable ...
One of the greatest questions for modern physics to address is how elements heavier than iron are cr...
Model calculations within the framework of the so-called γ process show an underproduction of the p ...
The p nucleus 92Mo is believed to be mainly produced through photodisintegration reactions in type I...
Most of the elements in the universe are produced via charged-particle fusion reactions during the p...
Model calculations within the framework of the so-called γ process show an underproduction of the p ...
Model calculations within the framework of the so-called γ process show an underproduction of the p ...
The elements in the universe are mainly produced by charged-particle fusion reactions and neutron-ca...
Abstract. The p nucleus 92Mo is believed to be mainly produced through photodisintegration reactions...
Abstract: The synthesis of heavy, proton rich isotopes is a poorly understood astrophysical process....
The synthesis of heavy, proton rich isotopes is a poorly understood astrophysical process. Thermonuc...
We present a nucleosynthesis sensitivity study for the γ-process in a Supernova type II model within...
Most of the elements heavier than iron are produced through neutron capture reactions in the s- and ...
Im Rahmen der vorliegenden Arbeit wurden Photodisintegrationsreaktionen an den Isotopen 92;93;100Mo ...
We present a nucleosynthesis sensitivity study for the γ-process in a Supernova type II model within...
The Coulomb Dissociation (CD) cross sections of the stable isotopes 92,94,100Mo and of the unstable ...
One of the greatest questions for modern physics to address is how elements heavier than iron are cr...
Model calculations within the framework of the so-called γ process show an underproduction of the p ...
The p nucleus 92Mo is believed to be mainly produced through photodisintegration reactions in type I...
Most of the elements in the universe are produced via charged-particle fusion reactions during the p...
Model calculations within the framework of the so-called γ process show an underproduction of the p ...
Model calculations within the framework of the so-called γ process show an underproduction of the p ...
The elements in the universe are mainly produced by charged-particle fusion reactions and neutron-ca...
Abstract. The p nucleus 92Mo is believed to be mainly produced through photodisintegration reactions...
Abstract: The synthesis of heavy, proton rich isotopes is a poorly understood astrophysical process....
The synthesis of heavy, proton rich isotopes is a poorly understood astrophysical process. Thermonuc...
We present a nucleosynthesis sensitivity study for the γ-process in a Supernova type II model within...
Most of the elements heavier than iron are produced through neutron capture reactions in the s- and ...
Im Rahmen der vorliegenden Arbeit wurden Photodisintegrationsreaktionen an den Isotopen 92;93;100Mo ...
We present a nucleosynthesis sensitivity study for the γ-process in a Supernova type II model within...
The Coulomb Dissociation (CD) cross sections of the stable isotopes 92,94,100Mo and of the unstable ...