High Purity germanium point-contact detectors have low energy thresholds and excellent energy resolution over a wide energy range, and are thus widely used in nuclear and particle physics. In rare event searches, such as neutrinoless double beta decay, the point-contact geometry is of particular importance since it allows for pulse-shape discrimination, and therefore for a significant background reduction. In this paper we investigate the pulse-shape discrimination performance of ultra-high purity germanium point contact detectors. It is demonstrated that a minimal net impurity concentration is required to meet the pulse-shape performance requirements
The GERDA experiment searches for the neutrinoless double beta decay of (76)Ge using high-purity ger...
The performance of a 630 g commercial broad energy germanium (BEGe) detector has been systematically...
Neutrinoless double-$$\beta $$ decay of $$^{76}$$Ge is searched for with germanium detectors where s...
High Purity germanium point-contact detectors have low energy thresholds and excellent energy resolu...
Experiments searching for the neutrinoless double beta decay in $$^{76}$$Ge are currently achieving ...
The p-type point-contact germanium detectors are novel techniques offering kg-scale radiation sensor...
Point contact germanium (PCGe) detectors play a vital role in research such as, neutrinoless double ...
Germanium detector arrays are needed for low-level counting facilities. The applications in such use...
Pulse shape discrimination is an important handle to improve sensitivity in low background experimen...
Point-like contact germanium detectors are one of the leading technologies in the neutrinoless doub...
A study of signals originating near the lithium-diffused n+ contact of p-type point contact (PPC) hi...
While High Purity Germanium (HPGe) detectors are the gold standard for high-resolution gamma-ray spe...
We report on the characterization of two inverted coaxial Ge detectors in the context of being emplo...
A four-fold segmented n–type point-contact “Broad Energy” high-purity germanium detector, SegBEGe, h...
The detection of low-energy deposition in the range of sub-eV through ionization using germanium (Ge...
The GERDA experiment searches for the neutrinoless double beta decay of (76)Ge using high-purity ger...
The performance of a 630 g commercial broad energy germanium (BEGe) detector has been systematically...
Neutrinoless double-$$\beta $$ decay of $$^{76}$$Ge is searched for with germanium detectors where s...
High Purity germanium point-contact detectors have low energy thresholds and excellent energy resolu...
Experiments searching for the neutrinoless double beta decay in $$^{76}$$Ge are currently achieving ...
The p-type point-contact germanium detectors are novel techniques offering kg-scale radiation sensor...
Point contact germanium (PCGe) detectors play a vital role in research such as, neutrinoless double ...
Germanium detector arrays are needed for low-level counting facilities. The applications in such use...
Pulse shape discrimination is an important handle to improve sensitivity in low background experimen...
Point-like contact germanium detectors are one of the leading technologies in the neutrinoless doub...
A study of signals originating near the lithium-diffused n+ contact of p-type point contact (PPC) hi...
While High Purity Germanium (HPGe) detectors are the gold standard for high-resolution gamma-ray spe...
We report on the characterization of two inverted coaxial Ge detectors in the context of being emplo...
A four-fold segmented n–type point-contact “Broad Energy” high-purity germanium detector, SegBEGe, h...
The detection of low-energy deposition in the range of sub-eV through ionization using germanium (Ge...
The GERDA experiment searches for the neutrinoless double beta decay of (76)Ge using high-purity ger...
The performance of a 630 g commercial broad energy germanium (BEGe) detector has been systematically...
Neutrinoless double-$$\beta $$ decay of $$^{76}$$Ge is searched for with germanium detectors where s...