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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >The time-walk of analog constant fraction discriminators using very fast scintillator detectors with linear and non-linear energy response
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The time-walk of analog constant fraction discriminators using very fast scintillator detectors with linear and non-linear energy response

机译:使用具有线性和非线性能量响应的非常快的闪烁检测器,对模拟恒定分数鉴别器进行时移

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摘要

The electronic γ-γ fast timing technique allows for direct nuclear lifetime determination down to the few picoseconds region by measuring the time difference between two coincident γ-ray transitions. Using high resolution ultra-fast LaBr_3(Ce) scintillator detectors in combination with the recently developed mirror symmetric centroid difference method, nuclear lifetimes are measured with a time resolving power of around 5 ps. The essence of the method is to calibrate the energy dependent position (centroid) of the prompt response function of the setup which is obtained for simultaneously occurring events. This time-walk of the prompt response function induced by the analog constant fraction discriminator has been determined by systematic measurements using different photomultiplier tubes and timing adjustments of the constant fraction discriminator. We propose a universal calibration function which describes the time-walk or the combined γ-γ time-walk characteristics, respectively, for either a linear or a non-linear amplitude versus energy dependency of the scintillator detector output pulses.
机译:电子γ-γ快速定时技术可以通过测量两个重合的γ射线跃迁之间的时间差,直接确定几皮秒范围内的核寿命。结合高分辨率超快LaBr_3(Ce)闪烁体探测器和最新开发的镜面对称质心差方法,可以以约5 ps的时间分辨能力测量核寿命。该方法的本质是校准针对同时发生的事件而获得的设置的快速响应功能的能量相关位置(质心)。通过使用不同的光电倍增管进行系统测量并确定常数分数鉴别器的定时,已经确定了由模拟常数分数鉴别器引起的快速响应函数随时间变化的情况。我们提出了一个通用的校准函数,该函数分别描述了闪烁器检测器输出脉冲的线性或非线性幅度与能量相关性的时间步长或组合的γ-γ时间步长特性。

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