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A four-fold segmented n-type point-contact Broad Energy high-purity germanium detector, SegBEGe, has been characterised at the Max-Planck-Institut fur Physik in Munich. The main characteristics of the detector are described and first measurements concerning the detector properties are presented. The possibility to use mirror pulses to determine source positions is discussed as well as charge losses observed close to the core contact.
We present data characterizing the performance of the first segmented, N-type Ge detector, isotopically enriched to 85% $^{76}$Ge. This detector, based on the Ortec PT6x2 design and referred to as SEGA (Segmented, Enriched Germanium Assembly), was de
An electrically cooled Broad Energy Germanium (BEGe) detector has been characterized in the energy range E$_{gamma}$ $sim$ 0.122 - 7 MeV by utilizing the $gamma$- rays emitted by a short-lived resonance state in $^{15}$O populated through $^{14}$N(p,
The next generation of very-short-baseline reactor experiments will require compact detectors operating at surface level and close to a nuclear reactor. This paper presents a new detector concept based on a composite solid scintillator technology. Th
Three-dimensional finely grained plastic scintillator detectors bring many advantages in particle detectors, allowing a massive active target which enables a high-precision tracking of interaction products, excellent calorimetry and a sub-nanosecond
DANSSino is a simplified pilot version of a solid-state detector of reactor antineutrino (it is being created within the DANSS project and will be installed close to an industrial nuclear power reactor). Numerous tests performed under a 3 GW(th) reac