Studies of charged-particle reactions for low-energy nuclear astrophysics require high sensitivity, which can be achieved by means of detection setups with high efficiency and low backgrounds, to obtain precise measurements in the energy region of interest for stellar scenarios. High-efficiency total absorption spectroscopy is an established and powerful tool for studying radiative capture reactions, particularly if combined with the cosmic background reduction by several orders of magnitude obtained at the Laboratory for Underground Nuclear Astrophysics (LUNA). We present recent improvements in the detection setup with the Bismuth Germanium Oxide (BGO) detector at LUNA, aiming to reduce high-energy backgrounds and increase the summing dete...
For the study of astrophysically relevant capture reactions in the underground laboratory LUNA a new...
Most of the elements constituting the universe were produced in stars through a series of nuclear re...
The experimental study of nuclear reactions of astrophysical interest is greatly facilitated by a lo...
Direct measurements of small nuclear reaction cross sections require a low background in the signal ...
The LUNA (Laboratory Underground for Nuclear Astrophysics) facility has been designed to study nucle...
The LUNA (Laboratory Underground for Nuclear Astrophysics) facility has been designed to study nucle...
The 17O(p, γ)18F reaction plays a crucial role in the hydrogen burning phases of different stellar s...
The experimental study of nuclear reactions of astrophysical interest is greatly facilitated by a lo...
For the study of astrophysically relevant capture reactions in the underground laboratory LUNA a new...
The experimental study of nuclear reactions of astrophysical interest is greatly facilitated by a lo...
The experimental study of nuclear reactions of astrophysical interest is greatly facilitated by a lo...
The experimental study of nuclear reactions of astrophysical interest is greatly facilitated by a lo...
The 14N(p, gamma )15O reaction has been investigated by the LUNA experiment at the National Laborato...
LUNA (Laboratory for Underground Nuclear Astrophysics) is a nuclear astrophysics experiment running ...
For the study of astrophysically relevant capture reactions in the underground laboratory LUNA a new...
Most of the elements constituting the universe were produced in stars through a series of nuclear re...
The experimental study of nuclear reactions of astrophysical interest is greatly facilitated by a lo...
Direct measurements of small nuclear reaction cross sections require a low background in the signal ...
The LUNA (Laboratory Underground for Nuclear Astrophysics) facility has been designed to study nucle...
The LUNA (Laboratory Underground for Nuclear Astrophysics) facility has been designed to study nucle...
The 17O(p, γ)18F reaction plays a crucial role in the hydrogen burning phases of different stellar s...
The experimental study of nuclear reactions of astrophysical interest is greatly facilitated by a lo...
For the study of astrophysically relevant capture reactions in the underground laboratory LUNA a new...
The experimental study of nuclear reactions of astrophysical interest is greatly facilitated by a lo...
The experimental study of nuclear reactions of astrophysical interest is greatly facilitated by a lo...
The experimental study of nuclear reactions of astrophysical interest is greatly facilitated by a lo...
The 14N(p, gamma )15O reaction has been investigated by the LUNA experiment at the National Laborato...
LUNA (Laboratory for Underground Nuclear Astrophysics) is a nuclear astrophysics experiment running ...
For the study of astrophysically relevant capture reactions in the underground laboratory LUNA a new...
Most of the elements constituting the universe were produced in stars through a series of nuclear re...
The experimental study of nuclear reactions of astrophysical interest is greatly facilitated by a lo...