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Compact eight channel SPAD module for photon timing applications

机译:紧凑的八通道SPAD模块,用于光子定时应用

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Multi-dimensional Time Correlated Single Photon Counting has nowadays reached a prominent position among analytical techniques employed in the medical and biological fields. The development of instruments able to perform simultaneously temporal and spectral fluorescence analysis (sFLIM) is limited by the performances of single-photon detectors; in fact currently available arrays cannot satisfy simultaneously all the requirements. To face this rising quest, a fully-parallel eight channel module, based on a monolithic Single Photon Avalanche Diode (SPAD) array with great temporal resolution, high Photon Detection Efficiency (PDE) and low Dark Counting Rate (DCR), has been designed and fabricated. The system relies on a novel architecture of the single pixel, based on the integration of the timing pick-up circuit next to the photodetector, making the negative effects of electrical and optical crosstalk on photon timing performance negligible. To this aim, the custom technological process used to fabricate the SPAD has been modified, allowing the integration of MOS transistors without impairing the structure and the performance of the detector. The single channel is complemented by an external Active Quenching Circuit, fabricated in a standard CMOS technology, that ensures high maximum counting rate (> 5MHz) and low afterpulsing (< 2%). Finally, the output timing signals are read and conditioned by a proper CMOS electronics. The complete pixel shows a very good temporal resolution of about 45 ps (FWHM).
机译:如今,多维时间相关单光子计数已在医学和生物领域采用的分析技术中占据重要地位。能够同时进行时间和光谱荧光分析(sFLIM)的仪器的开发受到单光子检测器性能的限制。实际上,当前可用的阵列不能同时满足所有要求。为了应对这一日益增长的要求,已经设计了一个全并行的八通道模块,该模块基于单片单光子雪崩二极管(SPAD)阵列,具有高的时间分辨率,高的光子检测效率(PDE)和低的暗计数率(DCR)。和捏造。该系统基于单个像素的新颖架构,该架构基于光检测器旁边的时序拾取电路的集成,因此电和光串扰对光子时序性能的负面影响可忽略不计。为了这个目的,已经修改了用于制造SPAD的定制工艺过程,从而允许在不损害检测器的结构和性能的情况下集成MOS晶体管。单通道辅以外部有源淬火电路,该电路采用标准CMOS技术制造,可确保高最大计数率(> 5MHz)和低后脉冲(<2%)。最后,输出时序信号由适当的CMOS电子设备读取和调节。完整的像素显示约45 ps(FWHM)的非常好的时间分辨率。

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