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High-resolution imaging detector using five microchannel plates and a resistive anode encoder

机译:使用五个微通道板和电阻阳极编码器的高分辨率成像检测器

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We have developed a high-resolution imaging detector with five microchannel plates (MCPs) in a set of V and Z stacks and a resistive anode encoder (RAE) for future space applications. In a position-sensitive system with a RAE, the spatial resolution depends on the signal-to-noise ratios at the anode terminals. Therefore, a high and stable electron gain of MCPs allows the position determination of each photo-electron event with a high spatial resolution. We investigated the effect of the potentials applied to the detector on the pulse height distribution (PHD) and the spatial resolution by means of calculations and experiments. The calculations showed that the negative interstack potential reduced the size of the electron cloud at the Z-stack input by approx80percent The result suggests that, under such a condition, the Z-stack MCP is operated in the completely saturated mode and exhibits a narrow PHD. On the other hand, in the measurements, applying the negative interstack potential reduced the width of the PHD by approx60percent. As a result, the spatial resolution of 45 (mu)m, corresponding to 480 X 480 pixels, was achieved. The results enable us to optimize and apply the technique to future missions.
机译:我们开发了一种高分辨率成像探测器,该探测器在一组V和Z堆栈中具有五个微通道板(MCP)和一个电阻阳极编码器(RAE),用于未来的太空应用。在具有RAE的位置敏感系统中,空间分辨率取决于阳极端子处的信噪比。因此,MCP的高且稳定的电子增益允许以高空间分辨率确定每个光电子事件的位置。我们通过计算和实验研究了施加到探测器上的电势对脉冲高度分布(PHD)和空间分辨率的影响。计算表明,负的层间电势使Z层输入处的电子云尺寸减小了约80%。结果表明,在这种条件下,Z层MCP在完全饱和模式下运行,并且展现出狭窄的PHD 。另一方面,在测量中,施加负的堆栈间电位会使PHD的宽度减小约60%。结果,获得了对应于480×480像素的45μm的空间分辨率。结果使我们能够优化该技术并将其应用于未来的任务。

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