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The application of the curved-grid technique in a gas proportional scintillation counter with a small-diameter photo-multiplier tube

机译:曲线技术在气体比例闪烁计数器与小直径光乘法管的应用

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The curved-grid technique was developed to maintain the superior performance of large-area gas proportional scintillation counters (GPSCs) without resorting to complex and bulky focusing systems or large photomultiplier tubes (PMTs) for applications in energy-dispersive X-ray fluorescence analysis. The technique is a simple method to compensate for the variation in solid angle viewed by the PMT as a function of the radial distance from the cylindrical axis of the detector. The feasibility of the technique is demonstrated in a GPSC, by measuring the energy resolution as a function of entrance window diameter. With a properly shaped curved grid, no degradation in detector energy resolution is observed even when the effective detector sensitive area is increased approximately six-fold. The maximum ratio of detector entrance window to PMT diameter achieved thus far is approximately 0.75.
机译:开发了曲线技术以维持大面积气体比例闪烁计数器(GPSC)的优越性,而不借助于复合和庞大的聚焦系统或大型光电倍增管(PMTS),用于在能量分散X射线荧光分析中的应用。该技术是一种简单的方法,用于补偿由PMT观察的固体角度的变化作为距检测器的圆柱形轴的径向距离的函数。通过测量作为入口窗口直径的功能的能量分辨率,在GPSC中证明了该技术的可行性。利用适当形状的弯曲网格,即使当有效检测器敏感区域增加大约六倍时,也没有观察到检测器能量分辨率的降低。迄今为止所实现的PMT直径的探测器入口窗口的最大比约为约0.75。

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