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Planar silicon SPADs with 200-μm diameter and 35-ps photon timing resolution

机译:直径200μm的平面硅壳和35ps光子正时分辨率

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Time-correlated single photon counting (TCSPC) is exploited in emerging scientific applications in life sciences, such as single molecule spectroscopy, DNA sequencing, fluorescent lifetime imaging. Detectors with wide active area (diameter > 100 μm) are desirable for attaining good photon collection efficiency without requiring complex and time-consuming optical alignment and focusing procedures. Fiber pigtailing of the detector, often employed for having a more flexible optical system, is also obtained more simply and with greater coupling efficiency for wide-area detectors. TCSPC, however, demands to detectors also high photon-timing resolution besides low noise and high quantum efficiency. Particularly tight requirements are set for single-molecule fluorescence analysis, where components with lifetimes of tens of picoseconds are often met. Small photon timing jitter and wide area are considered conflicting requirements for the detector. We developed an improved planar silicon technology for overcoming the problem and providing a solid-state alternative to MCP-PMTs in demanding TCSPC applications. We fabricated Single Photon Avalanche Diodes (SPADs) with 200 μm active area diameter and fairly low dark counting rate (DCR). At moderately low temperature (-25 °C with Peltier cooler) the typical DCR is 1500 c/s and it is not difficult to select devices with less than 1000 c/s. The photon detection efficiency peaks at 48% around 530 nm and stays above 30% over all the visible range. A photon timing resolution of 35 ps FWHM (full width at half maximum) is obtained by using our patented pulse pick-up for processing the avalanche current.
机译:将时间相关的单光子计数(TCSPC)在生命科学的新兴科学应用中被利用,例如单分子光谱,DNA测序,荧光寿命成像。具有宽的有源区域(直径>100μm)的探测器是为了实现良好的光子收集效率而不需要复杂且耗时的光学对准和聚焦程序。通常用于具有更柔性的光学系统的纤维钉,通常用于具有更柔韧的光学系统,并且对于广域探测器的耦合效率也更简单地获得。然而,TCSPC除了低噪声和高量子效率之外,还需要检测器的探测器的高光子定时分辨率。特别紧密的要求设定用于单分子荧光分析,其中通常满足具有数十只皮倍的组件。小的光子时序抖动和广域广域被认为是对探测器的冲突要求。我们开发了一种改进的平面硅技术,用于克服问题并在苛刻的TCSPC应用中提供MCP-PMTS的固态替代品。我们制造了具有200μm有源面积直径和相当低的暗计数率(DCR)的单光子雪崩二极管(SPAD)。在适度低温(-25°C带珀耳帖冷却器),典型的DCR是1500 C / s,并且不难以选择小于1000℃/秒的设备。光子检测效率达到48%左右约530nm,并在所有可见范围内保持高于30%。通过使用我们的专利脉冲拾取来处理雪崩电流来获得35ps FWHM(半最大宽度)的光子正时分辨率。

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