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Characteristic Performance Evaluation of a New SAGe Well Detector for Small and Large Sample Geometries

机译:新型SAGe阱探测器对小尺寸和大尺寸样品的性能评估

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Environmental scientific research requires a detector that has sensitivity low enough to reveal the radiological content for the presence of potential contaminants in the sample at a reasonable counting time. CANBERRA developed a germanium detector geometry called Small Anode Germanium (SAGe) Well detector. The SAGe Well detector is a new type of low capacitance device manufactured using small anode technology capable of advancing many environmental scientific research applications. The performance of this detector has been evaluated for a range of sample sizes and geometries counted inside the well, and on the end cap of the detector. The detector has energy resolution performance similar to semi-planar detectors, and offers significant improvement over the existing coaxial and Well detectors. Energy resolution performance of 750 eV Full Width at Half Maximum (FWHM) at 122 keV -ray energy and resolution of 2.0–2.3 keV FWHM at 1332 keV -ray energy are guaranteed for detector volumes up to . The SAGe Well detector offers an optional 28 mm well diameter with the same energy resolution performance as the standard 16 mm well. Such outstanding performance will benefit environmental applications in revealing the detailed radionuclide content of samples, particularly at low energy. The detector is compatible with electric coolers without any sacrifice in performance and supports the CANBERRA Mathematical efficiency calibration method (In situ Object Calibration Software or ISOCS, and Laboratory SOurceless Calibration Software or LabSOCS). In addition, the SAGe Well detector supports true coincidence summing available in the ISOCS/LabSOCS framework. The improved resolution performance of this new device gr- atly enhances its detection sensitivity for a range of sample sizes and geometries counted inside the well. This results in lower minimum detectable concentrations (MDC) compared to Traditional Well detectors. The SAGe Well detectors are compatible with Marinelli beakers and compete very well with semi-planar and coaxial detectors for large samples in many applications.
机译:环境科学研究需要一种检测器,其灵敏度应足够低,以在合理的计数时间内揭示样品中潜在污染物的放射学含量。 CANBERRA开发了一种称为小阳极锗(SAGe)阱检测器的锗检测器。 SAGe阱检测器是使用小型阳极技术制造的新型低电容设备,能够推动许多环境科学研究应用。该检测器的性能已针对孔内以及检测器端盖上计数的一系列样本大小和几何形状进行了评估。该探测器具有类似于半平面探测器的能量分辨率性能,并且相对于现有的同轴探测器和Well探测器提供了显着改进。对于体积最大为的探测器,在122keV射线能量下的半峰全宽(FWHM)的能量分辨率性能为750eV,在1332keV射线能量下的分辨率为2.0–2.3keV FWHM。 SAGe井探测器提供可选的28毫米井径,具有与标准16毫米井相同的能量分辨率性能。这种出色的性能将有利于环境应用,特别是在低能量下,揭示样品中详细的放射性核素含量。该检测器与电冷却器兼容,性能不受影响,并支持CANBERRA数学效率校准方法(原位物体校准软件或ISOCS,以及实验室无极校准软件或LabSOCS)。另外,SAGe Well检测器支持ISOCS / LabSOCS框架中可用的真实重合和。这种新设备的高分辨率性能极大地提高了其对孔内计数的一系列样本大小和几何形状的检测灵敏度。与传统的阱检测器相比,这导致较低的最小可检测浓度(MDC)。 SAGe井探测器与Marinelli烧杯兼容,并且在许多应用中与半平面和同轴探测器在大型样品方面的竞争非常出色。

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