The method of relative self absorption is based on the technique of nuclear resonance fluorescence measurements. It allows for a model-independent determination of ground-state transition widths, natural level widths, and, consequently, of branching ratios to the ground state for individual excitations. Relative self–absorption experiments have been performed on the nuclei 6Li and 140Ce. In order to investigate the total level width for the 0+1, T = 1 level at 3563 keV in 6Li, a high-precision self-absorption measurement has been performed. In the case of 140Ce, self absorption has been applied for the first time to study decay widths of dipole-excited states in the energy regime of the pygmy dipole resonance
The decay properties of the Pygmy Dipole Resonance (PDR) have been investigated in the semi-magic N=...
This is an Open Access article distributed under the terms of the Creative Commons Attribution Licen...
This work presents the design and installation of a novel experimental setup -- the $\gamma^3$ setup...
The method of relative self absorption is based on the technique of nuclear resonance fluorescence m...
The method of relative self absorption is based on the technique of nuclear resonance fluorescence m...
In this work, a special application of the nuclear resonance fluorescence technique has been used an...
The technique of self absorption has been applied for the first time to study the decay pattern of l...
AbstractThe technique of self absorption has been applied for the first time to study the decay patt...
The technique of self absorption has been applied for the first time to study the decay pattern of l...
A novel method for determining nuclear level widths is used in this investigation. Neutron capture g...
Several cases of nuclear resonance scattering below the neutron emission threshold energy region hav...
Photon strength functions are some of the most important and useful properties of nuclei. Their uses...
In this work we evaluate the imaginary part of the isobar Δ self-energy Σ Δ from the two-body a...
AbstractThe decay properties of the Pygmy Dipole Resonance (PDR) have been investigated in the semi-...
The decay behavior of low-lying dipole states in 140Ce was investigated exploiting the γ3-setup at t...
The decay properties of the Pygmy Dipole Resonance (PDR) have been investigated in the semi-magic N=...
This is an Open Access article distributed under the terms of the Creative Commons Attribution Licen...
This work presents the design and installation of a novel experimental setup -- the $\gamma^3$ setup...
The method of relative self absorption is based on the technique of nuclear resonance fluorescence m...
The method of relative self absorption is based on the technique of nuclear resonance fluorescence m...
In this work, a special application of the nuclear resonance fluorescence technique has been used an...
The technique of self absorption has been applied for the first time to study the decay pattern of l...
AbstractThe technique of self absorption has been applied for the first time to study the decay patt...
The technique of self absorption has been applied for the first time to study the decay pattern of l...
A novel method for determining nuclear level widths is used in this investigation. Neutron capture g...
Several cases of nuclear resonance scattering below the neutron emission threshold energy region hav...
Photon strength functions are some of the most important and useful properties of nuclei. Their uses...
In this work we evaluate the imaginary part of the isobar Δ self-energy Σ Δ from the two-body a...
AbstractThe decay properties of the Pygmy Dipole Resonance (PDR) have been investigated in the semi-...
The decay behavior of low-lying dipole states in 140Ce was investigated exploiting the γ3-setup at t...
The decay properties of the Pygmy Dipole Resonance (PDR) have been investigated in the semi-magic N=...
This is an Open Access article distributed under the terms of the Creative Commons Attribution Licen...
This work presents the design and installation of a novel experimental setup -- the $\gamma^3$ setup...