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Fast Monolithic Detector Calibration Method - a simulation study

机译:快速单片探测器校准方法 - 模拟研究

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We have developed a fast detector calibration method, which is capable of calibration of monolithic crystal detectors fast and conveniently. This method could potentially be used to achieve the DOI calibration information of a thick detector. Compared with traditional calibration method, this calibration technique doesnt require a well-collimated pencil beams, and can calibrate a detector in reduced time with fan beams. After the collection of the calibration reference dataset, we propose a data-processing method called common-data subset (CDS) method to acquire the reference datasets as if they were acquired using a pencil beam or even as if there is a single-point light source scanning inside the scintillator. If using fan beams, only 2N scans (in x and y directions) are necessary to calibrate the whole detector surface instead of doing N2 scans using pencil gamma-ray beam. For calibration of the DOI information, 3N scans are necessary, within which the last set of N scans are done with slant beams. Monte-Carlo simulation has been done to support the feasibility of this method, which enables simple, fast and robust calibration for monolithic crystal detectors.
机译:我们开发了一种快速探测器校准方法,能够快速方便地校准整体晶体探测器。该方法可能用于实现厚检测器的DOI校准信息。与传统的校准方法相比,这种校准技术不需要良好准直的铅笔束,并且可以在缩短时间与风扇梁校准检测器。在校准参考数据集的收集之后,我们提出了一种称为公共数据子集(CDS)方法的数据处理方法,以获取参考数据集,就像使用铅笔束获取或甚至只有单点光一样闪光灯内部扫描。如果使用风扇束,则需要仅2N扫描(在x和y方向上)来校准整个探测器表面而不是执行n 2 使用铅笔伽马射线束扫描。为了校准DOI信息,需要3N扫描,在其中,最后一组N扫描都是用倾斜光束完成的。已经完成了Monte-Carlo仿真以支持这种方法的可行性,这使得整体晶体探测器可以实现简单,快速且坚固的校准。

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