The dead-layer uniformity of the top surface of two high purity germanium detectors has been studied using a novel automated scanning set-up that allows a fine-grained topography of a detector's top and lateral surfaces. Comparisons between measurements and Monte Carlo simulations allowed implementation of a dead-layer variation into the detector model, which reproduces the measurements results. The effect of the non-uniform dead-layer on activity determinations based on low-energy gamma-rays (i.e. below 100 key) has been determined to be of the order of 10% or more. (C) 2013 Elsevier Ltd. All rights reserved
In preparation for the planned mathematical efficiency calibration of a whole-body counter, models o...
In this thesis we will characterize a High Purity Germanium (HPGe) detector. First of all we will fi...
A methodology to determine the full energy peak efficiency (FEPE) for precise gamma spectrometry mea...
High-purity germanium (HPGe) detectors are commonly used for high-resolution gamma spectrometry. A H...
A collimated source of 241Am was scanned over the endcap of a 21 year old coaxial HPGe-detector that...
In this study, Monte Carlo simulations were used to calculate the full-energy peak efficiency of a p...
One important factor in using an High Purity Germanium (HPGe) detector is its efficiency that highly...
The effects of different passivation methods applied to the same planar high-purity germanium gamma ...
The project aimed at modelling an HPGe well detector in view to predict its photon-counting efficien...
Monte Carlo method was used to simulate the pulse-height response function of high-precision germani...
AbstractWe report on the efficiency calibration of a HPGe x-ray detector using radioactive sources a...
Compton suppressed high-purity germanium (HPGe) detector is well suited to the analysis of low level...
The CUP array of germanium (CAGe) is an array of fourteen high-purity germanium (HPGe) detectors. Th...
A detector model optimization procedure based on matching Monte Carlo simulations with measurements ...
In environmental radioactivity measurements, High Purity Germanium (HPGe) detectors are commonly use...
In preparation for the planned mathematical efficiency calibration of a whole-body counter, models o...
In this thesis we will characterize a High Purity Germanium (HPGe) detector. First of all we will fi...
A methodology to determine the full energy peak efficiency (FEPE) for precise gamma spectrometry mea...
High-purity germanium (HPGe) detectors are commonly used for high-resolution gamma spectrometry. A H...
A collimated source of 241Am was scanned over the endcap of a 21 year old coaxial HPGe-detector that...
In this study, Monte Carlo simulations were used to calculate the full-energy peak efficiency of a p...
One important factor in using an High Purity Germanium (HPGe) detector is its efficiency that highly...
The effects of different passivation methods applied to the same planar high-purity germanium gamma ...
The project aimed at modelling an HPGe well detector in view to predict its photon-counting efficien...
Monte Carlo method was used to simulate the pulse-height response function of high-precision germani...
AbstractWe report on the efficiency calibration of a HPGe x-ray detector using radioactive sources a...
Compton suppressed high-purity germanium (HPGe) detector is well suited to the analysis of low level...
The CUP array of germanium (CAGe) is an array of fourteen high-purity germanium (HPGe) detectors. Th...
A detector model optimization procedure based on matching Monte Carlo simulations with measurements ...
In environmental radioactivity measurements, High Purity Germanium (HPGe) detectors are commonly use...
In preparation for the planned mathematical efficiency calibration of a whole-body counter, models o...
In this thesis we will characterize a High Purity Germanium (HPGe) detector. First of all we will fi...
A methodology to determine the full energy peak efficiency (FEPE) for precise gamma spectrometry mea...