The Heidelberg-Moscow Experiment is presently the most sensitive experiment looking for neutrinoless double-beta decay. Recently the already very low background has been lowered by means of a Digital Pulseshape Analysis using a one parameter cut to distinguish between pointlike events and multiple scattered events. To use all the information contained in a recorded digital pulse, we developed a new technique for event recognition based on neural networks
Procedures developed to separate single- and multiple-site events in germanium detector are tested w...
Transition Edge Sensors detector devices, like the core of the X-IFU instrument that will be on-boar...
Procedures developed to separate single- and multiple-site events in germanium detector are tested w...
Experiments searching for rare processes like neutrinoless double beta decay heavily rely on the ide...
KamLAND-Zen is a neutrinoless double beta decay $(0\nu\beta\beta)$ search experiment using $^{136}$...
Liquid scintillator-based detectors are one of the leading detector technologies in the search for n...
Convolutional neural networks (CNNs) are widely used state-of-the-art computer vision tools that are...
We investigate the potential of using deep learning techniques to reject background events in search...
The GERDA experiment located at the Laboratori Nazionali del Gran Sasso of INFN searches for neutrin...
The aim of this thesis is to perform an analysis of Signal recognition and Background rejection to o...
The new generation of nuclear physics detectors that used to study nuclear reactions is considering ...
Neutrinoless double beta decay (0) is a major interest in neutrino physics. Discovery of 0 would dem...
A pulse-shape discrimination method based on artificial neural networks was applied to pulses simula...
A typical problem in low-level liquid scintillation (LS) counting is the identification of alpha par...
A pulse-shape discrimination method based on artificial neural networks was applied to pulses simula...
Procedures developed to separate single- and multiple-site events in germanium detector are tested w...
Transition Edge Sensors detector devices, like the core of the X-IFU instrument that will be on-boar...
Procedures developed to separate single- and multiple-site events in germanium detector are tested w...
Experiments searching for rare processes like neutrinoless double beta decay heavily rely on the ide...
KamLAND-Zen is a neutrinoless double beta decay $(0\nu\beta\beta)$ search experiment using $^{136}$...
Liquid scintillator-based detectors are one of the leading detector technologies in the search for n...
Convolutional neural networks (CNNs) are widely used state-of-the-art computer vision tools that are...
We investigate the potential of using deep learning techniques to reject background events in search...
The GERDA experiment located at the Laboratori Nazionali del Gran Sasso of INFN searches for neutrin...
The aim of this thesis is to perform an analysis of Signal recognition and Background rejection to o...
The new generation of nuclear physics detectors that used to study nuclear reactions is considering ...
Neutrinoless double beta decay (0) is a major interest in neutrino physics. Discovery of 0 would dem...
A pulse-shape discrimination method based on artificial neural networks was applied to pulses simula...
A typical problem in low-level liquid scintillation (LS) counting is the identification of alpha par...
A pulse-shape discrimination method based on artificial neural networks was applied to pulses simula...
Procedures developed to separate single- and multiple-site events in germanium detector are tested w...
Transition Edge Sensors detector devices, like the core of the X-IFU instrument that will be on-boar...
Procedures developed to separate single- and multiple-site events in germanium detector are tested w...