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High speed multichannel Time-Correlated Single Photon Counting electronics based on SiGe integrated time-to-digital converters

机译:基于SiGe集成时间数字转换器的高速多通道时间相关单光子计数电子设备

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Time Correlated Single Photon counting (TCSPC) with picosecond timing is a key method in many areas of applied physics. One of the most important areas is that of fluorescence lifetime measurement in biophysics and the life sciences. Precisely timed photon counting for the purpose of coincidence correlation is now also emerging as the most common approach to quantum state interpretation in experimental quantum optics. Therefore, time-correlated single photon counting electronics, traditionally mostly used in time-resolved fluorescence research are facing new challenges in different emerging areas. Consequently such instruments are undergoing a fresh cycle of innovation, some of which we try to highlight here. The new picosecond TCSPC system we present provides several interesting new features resulting from a high speed monolithic integration in one of the fastest semiconductor technologies available today. The result is a high timing resolution by direct digital conversion and a very short deadtime. Apart from conventional histogramming over a very long time span, we can implement continouos single photon recording modes hat allow picosecond timing of all photon events with respect both to a sync signal as well as on a virtually infinite time scale. Multiple timing channels can also be operated indpendently and in parallel, e.g. for picosecond correlation analysis between signals from multiple photon detectors.
机译:皮秒计时的时间相关单光子计数(TCSPC)是许多应用物理领域的关键方法。最重要的领域之一是生物物理学和生命科学中荧光寿命的测量。出于一致性相关的目的,精确定时的光子计数现在也正在成为实验量子光学中最常见的量子态解释方法。因此,传统上主要用于时间分辨荧光研究的与时间相关的单光子计数电子器件在不同的新兴领域面临着新的挑战。因此,此类工具正在经历一个新的创新周期,在此我们尝试着重强调其中的一些。我们介绍的新型皮秒TCSPC系统提供了一些有趣的新功能,这些功能是通过将高速单片集成到当今最快的半导体技术之一中而产生的。结果是通过直接数字转换实现了高时序分辨率,并且死区时间非常短。除了在很长的时间跨度上进行传统的直方图绘制之外,我们还可以实现连续单光子记录模式,从而允许所有光子事件相对于同步信号以及在几乎无限的时间尺度上都具有皮秒级的定时能力。多个定时通道也可以独立和并行操作,例如用于来自多个光子探测器的信号之间的皮秒相关分析。

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