首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Selecting and designing the front-end amplifier for high-gain photomultiplier detectors with optimal timing performance
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Selecting and designing the front-end amplifier for high-gain photomultiplier detectors with optimal timing performance

机译:选择和设计具有最佳定时性能的高增益光电倍增管检测器的前端放大器

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High-gain photomultiplier detectors are employed in an increasing number of applications in different fields to evaluate with great accuracy the occurrence time of light flashes composed by few or even single photons. Examples of these application fields are medical imaging, astroparticle and high energy physics, laser spectroscopy and LIDAR. To fulfill a good single photon timing accuracy, in the range of few hundreds of picoseconds, not only detectors with intrinsic excellent timing resolution (photomultiplier tubes, microchannel plated detectors, silicon photo multipliers, etc.) must be used, but the very first front-end amplifier (FEA) stage, used to read-out the detector, must also be carefully chosen and designed.We compare here three commonly used solutions for the FEA, from the point of view of the best achievable timing resolution: the charge sensitive amplifier (CSA), the voltage amplifier (VA) and the current buffer (CB). The results show that the CSA solution is limited in terms of frequency response by the usually large equivalent capacitance of the detector and that, surprisingly, the presence of the parasitic inductance L, due to interconnection detector-FEA, has a noise shaping effect which favorably affects the timing accuracy of the CB over the VA configuration. To support this study, simulations of simple implementations of the compared FEA solutions have been performed, under the same conditions.Moreover, with reference to a given detector and to a particular value of L, we show how the best timing accuracy of the CB is obtained by selecting an appropriate combination of input resistance and bandwidth of the FEA.
机译:高增益光电倍增管检测器用于不同领域的越来越多的应用中,以高精度评估由很少甚至单个光子组成的闪光的发生时间。这些应用领域的示例是医学成像,天体粒子和高能物理,激光光谱和LIDAR。为了达到良好的单光子定时精度,在几百皮秒的范围内,不仅必须使用具有固有优异定时分辨率的检测器(光电倍增管,微通道镀膜检测器,硅光电倍增器等),而且还必须首先使用端放大器(FEA)阶段,用于读出检测器,也必须仔细选择和设计。在此,我们从最佳可实现的时序分辨率的角度比较三种常用的FEA解决方案:电荷敏感放大器(CSA),电压放大器(VA)和电流缓冲器(CB)。结果表明,CSA解决方案在频率响应方面受到检测器通常较大的等效电容的限制,并且令人惊讶的是,由于互连检测器-FEA而导致的寄生电感L的存在具有良好的噪声整形效果在VA配置上会影响CB的时序精度。为了支持这项研究,在相同条件下对比较的FEA解决方案的简单实现进行了仿真,此外,参考给定的检测器和特定的L值,我们展示了CB的最佳定时精度是通过选择合适的输入电阻和FEA带宽组合获得的结果。

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