论文标题
电子饮用各向异性的温度依赖性及其对电子饮用模型的影响
Temperature Dependence of the Electron-Drift Anisotropy and Implications for the Electron-Drift Model
论文作者
论文摘要
武锗探测器中的电子漂移进行了许多假设的建模。面对数据,必须重新审视这些假设。详细研究了电子的温度依赖性,以详细研究了N型分割的点接触仪馆检测器的温度依赖性。将检测器安装在温度控制的电冷冷冻仪中。从$^{133} $ ba源中使用准81个keV光子诱导表面事件。对在不同温度下进行的表面扫描中收集的脉冲的上升时间进行了详细分析。电子漂移的纵向各向异性随温度升高而降低。一种新的方法,利用使用SolidStatedEtectors.jl通过模拟确定的指定的上升时间窗口来隔离电子沿不同轴的纵向漂移,以量化这一观察值。在相关仿真包装中广泛使用的纵向漂移速度与标准电子漂移模型相结合的测量温度依赖性导致了非物理预测。修改电子饮用模型的第一个建议是动机和描述的。显示了SolidStateDeTectors.jl中首次实现修改模型的结果。他们很好地描述了数据。建议对模型的一般审查和迁移率的标准输入值。
The electron drift in germanium detectors is modeled making many assumptions. Confronted with data, these assumptions have to be revisited. The temperature dependence of the drift of electrons was studied in detail for an n-type segmented point-contact germanium detector. The detector was mounted in a temperature controlled, electrically cooled cryostat. Surface events were induced with collimated 81 keV photons from a $^{133}$Ba source. A detailed analysis of the rise time of pulses collected in surface scans, performed at different temperatures, is presented. The longitudinal anisotropy of the electron drift decreases with rising temperature. A new approach, making use of designated rise-time windows determined by simulations using SolidStateDetectors.jl, was used to isolate the longitudinal drift of electrons along different axes to quantify this observation. The measured temperature dependence of the longitudinal drift velocities combined with the standard electron drift model as widely used in relevant simulation packages results in unphysical predictions. A first suggestion to modify the electron-drift model is motivated and described. The results of a first implementation of the modified model in SolidStateDetectors.jl are shown. They describe the data reasonably well. A general review of the model and the standard input values for mobilities is suggested.