Direct measurements of small nuclear reaction cross sections require a low background in the signal region of interest to achieve the necessary sensitivity. We describe two complementary detector setups that have been used for studies of (p, γ) reactions with solid targets at the Laboratory for Underground Nuclear Astrophysics (LUNA): a high-purity germanium detector and a bismuth germanate (BGO) detector. We present the effect of a customised lead shielding on the measured background spectra in the two detector setups at LUNA. We developed a model to describe the contributions of environmental and intrinsic backgrounds in the BGO detector measurements. Furthermore we present an upgrade of the data acquisition system for our BGO detector, ...
We describe a new high-purity germanium (HPGe) detector setup for low-background γ-ray spectrometry....
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...
Direct measurements of small nuclear reaction cross sections require a low background in the signal ...
For the measurement of reactions with small cross sections as aimed for in the Laboratory for Underg...
Studies of charged-particle reactions for low-energy nuclear astrophysics require high sensitivity, ...
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...
For the study of astrophysically relevant capture reactions in the underground laboratory LUNA a new...
At temperatures typical of astrophysical environments, nuclear cross sections are extremely small an...
For the study of astrophysically relevant capture reactions in the underground laboratory LUNA a new...
At temperatures typical of astrophysical environments, nuclear cross sections are extremely small an...
The electron screening effect has been studied by measuring the cross section of the reaction D(3He,...
At H-burning temperatures in the Sun, nuclear cross sections are extremely small and experimental me...
We describe a new high-purity germanium (HPGe) detector setup for low-background γ-ray spectrometry....
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...
Direct measurements of small nuclear reaction cross sections require a low background in the signal ...
For the measurement of reactions with small cross sections as aimed for in the Laboratory for Underg...
Studies of charged-particle reactions for low-energy nuclear astrophysics require high sensitivity, ...
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...
For the study of astrophysically relevant capture reactions in the underground laboratory LUNA a new...
At temperatures typical of astrophysical environments, nuclear cross sections are extremely small an...
For the study of astrophysically relevant capture reactions in the underground laboratory LUNA a new...
At temperatures typical of astrophysical environments, nuclear cross sections are extremely small an...
The electron screening effect has been studied by measuring the cross section of the reaction D(3He,...
At H-burning temperatures in the Sun, nuclear cross sections are extremely small and experimental me...
We describe a new high-purity germanium (HPGe) detector setup for low-background γ-ray spectrometry....
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...