...
首页> 外文期刊>Journal of Modern Optics >Multipixel single-photon avalanche diode array for parallel photon counting applications
【24h】

Multipixel single-photon avalanche diode array for parallel photon counting applications

机译:用于并行光子计数应用的多像素单光子雪崩二极管阵列

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

In life science, optical techniques for the characterization of biological processes are well established and widely used. In most of them, to obtain the best performances, detectors with single-photon detection capability are required. Moreover, the growing demand for this type of information is pushing the technology towards a parallelization of the analysis. These requirements make it very challenging to develop new detection heads, because state-of-the-art detectors, such as photomultiplier tubes (PMTs) and charged coupled devices (CCDs), have some drawbacks. For example, in fluorescence correlation spectroscopy (FCS) fluorescence fluctuations must be monitored on a short time scale because typical time constants range from hundreds of nanoseconds to milliseconds. In this case, developing parallel modules for this application is very challenging. In fact, PMTs are bulky and they cannot be integrated, while the use of imaging detectors, such as CCDs and electron multiplying CCDs, is strongly limited by the read time that determines the minimum correlation time detectable by FCS analysis. We present here a multichannel photon counting module that exploits a monolithic array of single-photon avalanche diodes (SPADs). The detector array consists of eight 50 μm diameter SPADs featuring low dark counting rate and high photon detection efficiency (50% at 550 nm); inter-pixel crosstalk probability is as low as 2 × 10~(-3). The use of highly integrated active quenching circuits makes it possible to design a very compact read-out circuit, yet providing eight fully independent counting channels operating at high count rate (up to 30 million counts per second). Parallel-mode operation, high count rate and low-cost make this module a potential breakthrough for a widespread diffusion of FCS analysis.
机译:在生命科学中,用于表征生物过程的光学技术已得到广泛应用并得到广泛应用。在大多数情况下,为了获得最佳性能,需要具有单光子检测功能的检测器。此外,对此类信息的需求不断增长,正推动该技术朝着分析并行化的方向发展。这些要求使开发新的检测头变得非常具有挑战性,因为最先进的检测器(例如光电倍增管(PMT)和电荷耦合器件(CCD))具有某些缺点。例如,在荧光相关光谱法(FCS)中,必须在短时间范围内监视荧光波动,因为典型的时间常数范围从几百纳秒到几毫秒。在这种情况下,为该应用程序开发并行模块非常具有挑战性。实际上,PMT体积庞大且无法集成,而成像检测器(如CCD和电子倍增CCD)的使用受到读取时间的强烈限制,读取时间决定了可通过FCS分析检测到的最小相关时间。我们在这里展示了一个多通道光子计数模块,该模块利用了单光子雪崩二极管(SPAD)的单片阵列。该探测器阵列由八个直径为50μm的SPAD组成,具有低暗计数率和高光子探测效率(在550 nm时为50%);像素间串扰概率低至2×10〜(-3)。高度集成的有源猝灭电路的使用使设计出非常紧凑的读出电路成为可能,同时提供了八个完全独立的计数通道,它们以高计数率(每秒高达3000万计数)运行。并行模式操作,高计数率和低成本使该模块成为FCS分析广泛传播的潜在突破。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号