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Effects of magnetic fields on HPGe tracking detectors

机译:磁场对HPGE跟踪探测器的影响

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摘要

We present a study of magnetic fields effects on the position resolution and energy response of hyper-pure germanium detectors. Our results provide realistic estimates of the potential impact on the resolving power of tracking-arrays from (fringe) magnetic fields present when operating together with large spectrometers. By solving the equations of motion for the electron and holes in the presence of both electric and magnetic fields, we analyzed the drift trajectories of the charge carriers to determine the deviations in the positions at the end point of the trajectories, as well as changes in drift lengths affecting the energy resolution and peak shift due to trapping. Our results show that the major effect is in the deviation of the transverse (to the electric field direction) position and suggest that, if no corrective action is taken in the pulse-shape and tracking data analysis procedures, a field strength approx> 0.1 T will start to impact the intrinsic position resolution of 2 mm (RMS). At fields above ~1 T, the degradation of the energy response becomes observable.
机译:我们展示了对超纯锗探测器的位置分辨率和能量响应的磁场影响。我们的结果提供了对与大型光谱仪一起操作时的跟踪 - 阵列的磁场的潜在影响的实际估计。通过求解电子和磁场存在的电子和孔的运动方程,我们分析了电荷载体的漂移轨迹,以确定轨迹终点的位置处的偏差,以及变化漂移长度影响由于捕获引起的能量分辨率和峰值偏移。我们的结果表明,主要效果处于横向(电场方向)位置的偏差,并表明,如果在脉冲形状和跟踪数据分析程序中没有采取纠正措施,则场强约为> 0.1t将开始影响2mm(RMS)的内在位置分辨率。在〜1 t的字段中,能量响应的劣化变得可观察到。

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