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Profile SP (P-type) HPGe Detectors - Premium Resolution at Low to Medium Energies

机译:轮廓SP(P型)HPGE探测器 - 低至中型能量的高级分辨率

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The resolution performance of a High Purity Germanium (HPGe) gamma-ray detector is a function of three factors: crystal quality and geometry, electronic noise, and any microphonic contribution. Improving detector resolution solves peak overlapping problems in complicated multi-peak spectra and improves the performance of peak identification algorithms yielding fewer false positive results in spectrometry analysis. A new Low Noise Back Contact (LNBC) has been developed by ORTEC for p-type semi-planar HPGe detectors. This LNBC minimizes electronic noise, while the semi-planar p-type crystal geometry offers premium efficiency and charge collection performance for the 3 keV to 1 MeV energy region, where the majority of nuclides reside. Additionally, semi-planar crystal geometry lowers the Compton region created by higher energy gammas, allowing lower Minimum Detectable Activity (MDA) levels. The "Profile SP" with unmatched premium resolution results will be discussed for various energies and shaping times.
机译:高纯度锗(HPGE)伽马射线探测器的分辨率性能是三种因素的函数:晶体质量和几何形状,电子噪音和任何麦克约贡献。改进探测器分辨率解决了复杂的多峰光谱中的峰值重叠问题,提高了峰值识别算法的性能,从而产生了较少的假阳性阳性结果,在光谱分析中产生较少的阳性结果。新的低噪声返回联系人(LNBC)由Ortec为P型半平面HPGE探测器开发。该LNBC最大限度地减少了电子噪声,而半平面P型晶体几何形状为3keV至1 Mev能量区域提供优质效率和充电性能,其中大多数核素都存在。此外,半平面晶体几何形状降低了由较高能量伽马组织产生的康柏区域,允许更低的最小可检测活动(MDA)水平。将讨论具有无与伦比的高级分辨率结果的“轮廓SP”,以便各种能量和整形时间讨论。

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