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An interdigital SiPM with coincidence measurement for rejection of dark noise

机译:具有重合度测量的叉指式SiPM,可消除暗噪声

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Dark noise caused by thermally generated carriers in avalanche region is one of the main obstacles for photon detection with silicon photomultiplier (SiPM), especially in low light level detection. Coincidence measurement is an effective method for reducing the dark noise. This manuscript investigates a specially designed interdigital SiPM with coincidence measurement based on a digital oscilloscope, which can realize remarkable suppression of the dark noise and measure the weak light precisely. Employing the presented SiPM and the coincidence method, the dark pulse rate of SiPM was reduced to 1.69% of the results without coincidence method; the pulses area distribution for low light level detection was improved with high resolution and the spectrum obeys Poisson distribution. The reduction of dark noise was quite in agreement with the coincidence theory calculation. (C) 2017 Elsevier B.V. All rights reserved.
机译:雪崩区中由热产生的载流子引起的暗噪声是硅光电倍增管(SiPM)进行光子检测的主要障碍之一,尤其是在低光水平检测中。一致性测量是减少暗噪声的有效方法。该手稿研究了一种特殊设计的基于数字示波器的具有重合测量功能的叉指SiPM,它可以实现对暗噪声的显着抑制,并可以精确地测量弱光。采用提出的SiPM和重合方法,无重合方法的SiPM暗脉冲率降低到结果的1.69%。高分辨率改善了用于弱光检测的脉冲面积分布,并且光谱服从泊松分布。暗噪声的减少与符合理论计算完全一致。 (C)2017 Elsevier B.V.保留所有权利。

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