An empirical analytical function has been obtained for the full energy peak efficiency of a co-axial P-type High Purity Germanium Detector for gamma-ray energies in the range of 80 - 1333 keV and source-to-detector distance in the range of 1.0 - 4.0 cm. Comparison of the calculated efficiencies with the corresponding experimental value agrees very well within standard deviations of 1.8 - 3.7 %. JOURNAL OF THE GHANA SCIENCE ASSOCIATION Volume 2 No. 1 (2000) pp. 64-7
The calibration of hyper pure germanium semiconductor detectors is required to calculate the activit...
The relative efficiency up to 9.7 MeV was calibrated for two coaxial detectors, one Ge(Li) and one h...
This note describes a method for the determination of the peak-to-total ratio, P/T versus gamma-ray ...
281-286To detect very low radio activities in the environmental samples, it is sometimes necessary...
Purpose: Gamma spectrometer systems are complex instruments, and the quality of the numerical result...
Purpose: Gamma spectrometer systems are complex instruments, and the quality of the numerical result...
Following work done in the energy region above 100 keV, the high-precision calibration of a co-axial...
Following work done in the energy region above 100 keV, the high-precision calibration of a co-axial...
Monte Carlo efficiency transfer method was used to determine full energy peak efficiency of three ty...
International audienceFollowing work done in the energy region above 100 keV, the high-precision cal...
International audienceFollowing work done in the energy region above 100 keV, the high-precision cal...
Monte Carlo efficiency transfer method was used to determine full energy peak efficiency of three ty...
International audienceMonte Carlo efficiency transfer method was used to determine full energy peak ...
The intrinsic efficiency of a Ge(Li) detector was determined for gamma-ray energies between 150 keV ...
The intrinsic efficiency of a Ge(Li) detector was determined for gamma-ray energies between 150 keV ...
The calibration of hyper pure germanium semiconductor detectors is required to calculate the activit...
The relative efficiency up to 9.7 MeV was calibrated for two coaxial detectors, one Ge(Li) and one h...
This note describes a method for the determination of the peak-to-total ratio, P/T versus gamma-ray ...
281-286To detect very low radio activities in the environmental samples, it is sometimes necessary...
Purpose: Gamma spectrometer systems are complex instruments, and the quality of the numerical result...
Purpose: Gamma spectrometer systems are complex instruments, and the quality of the numerical result...
Following work done in the energy region above 100 keV, the high-precision calibration of a co-axial...
Following work done in the energy region above 100 keV, the high-precision calibration of a co-axial...
Monte Carlo efficiency transfer method was used to determine full energy peak efficiency of three ty...
International audienceFollowing work done in the energy region above 100 keV, the high-precision cal...
International audienceFollowing work done in the energy region above 100 keV, the high-precision cal...
Monte Carlo efficiency transfer method was used to determine full energy peak efficiency of three ty...
International audienceMonte Carlo efficiency transfer method was used to determine full energy peak ...
The intrinsic efficiency of a Ge(Li) detector was determined for gamma-ray energies between 150 keV ...
The intrinsic efficiency of a Ge(Li) detector was determined for gamma-ray energies between 150 keV ...
The calibration of hyper pure germanium semiconductor detectors is required to calculate the activit...
The relative efficiency up to 9.7 MeV was calibrated for two coaxial detectors, one Ge(Li) and one h...
This note describes a method for the determination of the peak-to-total ratio, P/T versus gamma-ray ...