An experimental method to determine the (n,g) cross section of short-living s-process branching points using data of the inverse (g,n) reaction is presented. The method was used to observe the branching point nucleus 95Zr because the elemental abundance patterns corresponding to this branching point cannot be reproduced by full stellar models and a possible error source is the neutron capture cross section of 95Zr. The analysis of the experiment is still under progress, we will outline the current status in this manuscript
Neutron capture cross sections are fundamental in the study of the slow neutron capture process of n...
The (n, γ) cross section of 96Zr has been investigated at the CERN n_TOF spallation neutron source. ...
The neutron capture cross sections of the Zr isotopes are relevant to studies in nuclear structure, ...
An experimental method to determine the (n,gamma) cross section of short-living s-process branching ...
We present our method to determine the (n,gamma) reaction rates of s-process branching point nuclei ...
The neutron capture cross section of the unstable nucleus W-185 has been derived from experimental p...
The neutron capture cross sections of several unstable key isotopes acting as branching points in th...
The neutron capture cross section of the unstable s-process branching nucleus 185W has been derived ...
The neutron capture cross sections of the Zr isotopes have important implications in nuclear astroph...
The (gamma,n) reaction rate of W-186 was measured in order to deduce the (n,gamma) reaction rate of ...
We have carried out photodisintegration cross-section measurements on Kr86 using monoenergetic photo...
The goal of the present work was a precise, quantitative analysis of the s-process branching at &quo...
The neutron capture cross sections of the Zr isotopes have important implications in nuclear astroph...
The (n,γ ) cross section of 96Zr has been investigated at the CERN n TOF spallation neutron source. ...
International audienceRadiative neutron capture cross section measurements are of fundamental import...
Neutron capture cross sections are fundamental in the study of the slow neutron capture process of n...
The (n, γ) cross section of 96Zr has been investigated at the CERN n_TOF spallation neutron source. ...
The neutron capture cross sections of the Zr isotopes are relevant to studies in nuclear structure, ...
An experimental method to determine the (n,gamma) cross section of short-living s-process branching ...
We present our method to determine the (n,gamma) reaction rates of s-process branching point nuclei ...
The neutron capture cross section of the unstable nucleus W-185 has been derived from experimental p...
The neutron capture cross sections of several unstable key isotopes acting as branching points in th...
The neutron capture cross section of the unstable s-process branching nucleus 185W has been derived ...
The neutron capture cross sections of the Zr isotopes have important implications in nuclear astroph...
The (gamma,n) reaction rate of W-186 was measured in order to deduce the (n,gamma) reaction rate of ...
We have carried out photodisintegration cross-section measurements on Kr86 using monoenergetic photo...
The goal of the present work was a precise, quantitative analysis of the s-process branching at &quo...
The neutron capture cross sections of the Zr isotopes have important implications in nuclear astroph...
The (n,γ ) cross section of 96Zr has been investigated at the CERN n TOF spallation neutron source. ...
International audienceRadiative neutron capture cross section measurements are of fundamental import...
Neutron capture cross sections are fundamental in the study of the slow neutron capture process of n...
The (n, γ) cross section of 96Zr has been investigated at the CERN n_TOF spallation neutron source. ...
The neutron capture cross sections of the Zr isotopes are relevant to studies in nuclear structure, ...