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Performance of a gas avalanche pixel detector of 50 /spl mu/m pitch

机译:间距为50 / spl mu / m的气体雪崩像素检测器的性能

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摘要

We describe the performance of a square microdot (MDOT) detector of 50 /spl mu/m pitch, in terms of defocusing effect and gas gain. Both the count rate variation measurement and the computer simulation showed that the defocusing effect disappeared in the 50 /spl mu/m pitch MDOT. Initial charge buildup on the detector surface was also minimized when the small lateral dimension was combined with surface coating. The maximum gas gain was limited to /spl sim/1200 due to the small distance available for avalanche multiplication. We also developed a two-level microdot, namely closed-end gas electron multiplication (CEGEM) chamber. A CEGEM detector having a pitch of 200 /spl mu/m, holes of 40 /spl mu/m width and a spacer layer of 18.5 /spl mu/m thickness showed a maximum gain of /spl sim/400. This gain is expected to increase by increasing the spacer layer thickness and adjusting the hole size.
机译:我们以散焦效果和气体增益的角度描述了间距为50 / spl mu / m的方形微点(MDOT)检测器的性能。计数速率变化测量和计算机仿真均表明,在50 / spl mu / m节距的MDOT中散焦效果消失了。当较小的横向尺寸与表面涂层相结合时,在探测器表面上的初始电荷积累也被最小化。由于雪崩倍增的可用距离很小,因此最大气体增益限制为/ spl sim / 1200。我们还开发了一种二级微点,即封闭式气体电子倍增(CEGEM)室。间距为200 / spl mu / m,宽度为40 / spl mu / m的孔和厚度为18.5 / spl mu / m的间隔层的CEGEM检测器显示的最大增益为/ spl sim / 400。通过增加间隔层的厚度和调整孔的尺寸,可以预期增加增益。

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