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Simple Photomultiplier Tube Internal-Gating Method for Use in Subnanosecond Time-Resolved Spectroscopy

机译:亚纳秒时间分辨光谱中使用的简单光电倍增管内浇口方法

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We propose a simple photomultiplier tube (PMT) internal-gating method for use in the field of subnanosecond time-resolved spectroscopy. In the proposed method, we control two dynodes in the PMT by applying a gate signal whose pulse width is T_(g). When controlling the mth and the n(>m)th dynodes, a resolution time Δt is approximately given by Δt=T_(g)-(n-m)τ, where τ is a transit time of a lump of secondary electrons traveling between the two dynodes in the PMT. In principle, the resolution time Δt shorter than the pulse width T_(g) of the gate signal can be easily obtained. From a fundamental performance test, we found that a subnanosecond resolution time Δt=0.31 ns was obtained for the case of m=2 and n=5. To demonstrate the effectiveness of the proposed method, we carried out a time-resolved spectroscopic measurement of emission obtained from a white-light-emitting diode (LED) driven by a nanosecond current pulse.
机译:我们提出一种简单的光电倍增管(PMT)内门控方法,用于亚纳秒时间分辨光谱学领域。在提出的方法中,我们通过施加脉冲宽度为T_(g)的门控信号来控制PMT中的两个倍增极。当控制第m个和第n个(> m)倍增电极时,分离时间Δt近似为Δt= T_(g)-(nm)τ,其中τ是在这两者之间传播的二次电子团的渡越时间PMT中的打拿极。原则上,可以容易地获得比选通信号的脉冲宽度T_(g)短的分辨时间Δt。从基本性能测试中,我们发现对于m = 2和n = 5的情况,获得了亚纳秒的分辨时间Δt= 0.31 ns。为了证明所提出方法的有效性,我们对由纳秒级电流脉冲驱动的白光发光二极管(LED)的发射进行了时间分辨光谱测量。

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