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Comparative timing performances of S-CVD diamond detectors with different particle beams and readout electronics

机译:不同粒子束的S-CVD金刚石探测器的比较时序性能和读出电子器件

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One of the particular characteristics of diamond detectors is their fast charge collection time. This feature makes these detectors very attractive for timing measurements in both nuclear and particle physics experiments. The charge collection time in these detectors is of the order of a few hundred ps, therefore the timing performance depends greatly on the electronics readout of the detector. In this work we present comparative measurements made using a single crystal diamond detector and two different electronic readout chains. In particular, we used a charge sensitive amplifier (CSA) with a 100 MHz bandwidth and a voltage amplifier with a 2 GHz bandwidth. In order to evaluate the performance of the detector for charge signals generated by particles with energies below minimum ionizing, measurements were taken using 62 MeV proton beam at the INFN - Laboratori Nazionali del Sud. Another set of measurements was made with a 120 GeV proton beam at FNAL in order to evaluate the performance with MIP. The timing performance depends on the rise time of the signal and the Signal to Noise ratio. Both these characteristics are inversely related to the electronic readout bandwidth. The charge collection with the 62 MeV proton beam was about 130 Ke~- A S/N ratio of about 80 was obtained with the CSA, while the S/N ratio was approximately 4 with the 2 GHz broad-band amplifier. This resulted in a comparable time distribution value of around 70 ps RMS in both cases. However, charge collection is much smaller with minimum ionizing particles, and while it was possible to perform measurements with the CSA, with the broadband amplifier it was not possible to separate signals from the background noise. In this work we present and discuss the set-up used and the complete set of measurements, with final considerations regarding range of use to which these detector can be utilized.
机译:钻石探测器的特定特性之一是它们的快速充电时间。该特征使这些探测器非常吸引于核和粒子物理实验中的定时测量。这些探测器中的电荷收集时间为几百PS,因此定时性能大大取决于检测器的电子读数。在这项工作中,我们呈现了使用单晶钻石检测器和两种不同的电子读数链进行的比较测量。特别是,我们使用带有100 MHz带宽的充电放大器(CSA)和具有2GHz带宽的电压放大器。为了评估通过颗粒产生的电荷信号的检测器的性能,在最小电离低于电离,测量是在Infn的62 Mev质子束进行测量 - Laborisi Nazionii del Sud。在FNAL中使用120 GEV质子束进行另一套测量,以便使用MIP评估性能。定时性能取决于信号的上升时间和信噪比。这两种特征都与电子读出带宽相反。具有62meV质子束的电荷收集约为130ke〜 - 用CSA获得约80的S / N比,而2GHz宽带放大器的S / N比为约4。这导致两种情况下的相当时间分布值约为70ps rms。然而,充电收集比最小电离颗粒更小,虽然可以使用CSA进行测量,但是通过宽带放大器无法分离来自背景噪声的信号。在这项工作中,我们展示并讨论使用的设置和完整的测量集,最终考虑了可以使用这些探测器的使用范围。

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