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Single-Photon Detection Module Based on Large-Area Silicon Photomultipliers for Time-Domain Diffuse Optics

机译:基于大面积硅光电倍增器的单光子检测模块,用于时域漫射光学器件

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Silicon photomultipliers (SiPM) are pixelated single-photon detectors combining high sensitivity, good time resolution and high dynamic range. They are emerging in many fields, such as time-domain diffuse optics (TD-DO). This is a promising technique in neurology, oncology, and quality assessment of food, wood, and pharmaceuticals. SiPMs can have very large areas and can significantly increase the sensitivity of TD-DO in tissue investigation. However, such improvement is currently limited by the high detector noise and the worsening of SiPM single-photon time resolution due to the large parasitic capacitances. To overcome such limitation, in this paper, we present two single-photon detection modules, based on 6 × 6 mm~(2) and 10 × 10 mm~(2) SiPMs, housed in vacuum-sealed TO packages, cooled to ?15 °C and ?36 °C, respectively. They integrate front-end amplifiers and temperature controllers, being very useful instruments for TD-DO and other biological and physical applications. The signal extraction from the SiPM was improved. The noise is reduced by more than two orders of magnitude compared to the room temperature level. The full suitability of the proposed detectors for TD-DO measurements is outside the scope of this work, but preliminary tests were performed analyzing the shape and the stability of the Instrument Response Function. The proposed modules are thus fundamental building blocks to push the TD-DO towards deeper investigations inside the body.
机译:硅光电倍增器(SIPM)是像素化单光子探测器,组合高灵敏度,良好的时分和高动态范围。它们在许多领域中出现,例如时域漫射光学(TD-DO)。这是食品,木材和药物的神经病学,肿瘤学和质量评估中有前途的技术。 SIPMS可以具有很大的区域,并且可以显着提高TD-DO在组织调查中的敏感性。然而,由于大的寄生电容,这种改进目前受到高探测器噪声的限制和SIPM单光子时间分辨率的恶化。为了克服这种限制,在本文中,我们介绍了两个单光子检测模块,基于6×6mm〜(2)和10×10mm〜(2)Sipms,容纳在真空密封到包装中,冷却到?分别为15°C和?36°C。它们集成了前端放大器和温度控制器,是TD-DO和其他生物和物理应用的非常有用的仪器。从SIPM提取的信号提取得到改善。与室温水平相比,噪声减小了两个以上的数量级。所提出的TD-DO测量的探测器的全部适用性超出了该工作的范围,但进行了初步测试,分析了仪器响应功能的形状和稳定性。因此,所提出的模块是基本的构建块,以推动TD-DO朝着身体内更深入的研究。

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