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Dramatic resolution enhancement of gamma-ray spectra acquired with cadmium-zinc-telluride detectors via a patented pulse-shape-analysis methodology

机译:通过获得专利的脉冲形状分析方法,用镉锌碲化物探测器获得的伽马射线光谱的分辨率大大提高

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We are developing a technique to correct for the resolution-degrading ballistic deficit in cadmium-zinc-telluride (CZT) gamma-ray detectors using our patent-pending pulse-shape analysis methodology. The pulse-shape-analysis methodology has already been demonstrated by LLNL for application in Compton rejection (technology being licensed) and possible application to gamma-ray imaging with Ge-based systems. If the extension of our technique to CZT detectors is successful, this approach will yield a truly high-resolution CZT detector without the limitations associated with co-planar grids or other designs. Current indications are that we will achieve dramatic improvement to the resolution characteristics of CZT and greatly increase the utility of such devices for radiation detection and assessment applications. The current project status including simulations and experimental measurements are discussed.
机译:我们正在开发一种使用我们正在申请专利的脉冲形状分析方法来校正镉锌碲化物(CZT)γ射线探测器中降低分辨率的弹道缺陷的技术。 LLNL已经证明了脉冲形状分析方法可用于康普顿抑制(已获得技术许可),并可能应用于基于Ge的系统的伽马射线成像。如果将我们的技术成功扩展到CZT检测器,则此方法将产生真正的高分辨率CZT检测器,而不受共面网格或其他设计的限制。当前的迹象表明,我们将大大改善CZT的分辨率特性,并大大提高此类设备在辐射检测和评估应用中的效用。讨论了当前项目状态,包括模拟和实验测量。

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