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Energy windowing with Hamamatsu microchannel plate photomultipliers

机译:与滨松微型通道板光电倍增器的能量窗口

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To obtain high quality decay data using time-correlated single photon counting, it is essential to eliminate multiple-photon events. Events should be counted only when one photon is detected for a given excitation flash. An easy way to eliminate multiple photon events is to gate data collection, permitting an event to be registered only if the energy of the pulse is within limits appropriate for the detection of a single photon. This method, called energy windowing, was first described by Schuyler and Isenberg [R. Schuyler and I. Isenberg, Rev. Sci. Instrum. 42, 813-817 (1971)]. In this paper we present a formalism for describing the statistics of multiple photon events. This formalism gives us a means of characterizing the pulse height distribution and estimating the fraction of multiple events which leak through our energy window. It also describes how multiple photon events distort a decay function and behave as contaminant decays. We then present a method for using energy windowing with Hamamatsu microchannel photomultipliers, and examine the ability two tubes of different design to differentiate between single and multiple events.
机译:为了使用时间相关的单光子计数获得高质量的衰减数据,必须消除多重光子事件。仅当为给定激励闪光灯检测到一个光子时,才应计数事件。消除多个光子事件的简单方法是驻留数据收集,允许仅在脉冲的能量在适合于检测单个光子的限制范围内注册的事件。该方法称为能量窗口,首先由Schuyler和Isenberg描述[R. Schuyler和I. Isenberg,Rev. SCI。仪器。 42,813-817(1971)]。在本文中,我们提出了一种形式主义,用于描述多个光子事件的统计数据。这种形式主义为我们提供了一种表征脉冲高度分布和估计通过我们能量窗口泄漏的多个事件的分数的方法。它还描述了多个光子事件扭曲衰减函数并表现为污染物的程度。然后,我们提出了一种利用Hamamatsu MicroChannel光电倍增器使用能量窗口的方法,并检查不同设计的两个管,以区分单一和多个事件。

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