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Application of large-area avalanche photodiodes to energy-dispersive x-ray fluorescence analysis

机译:大面积雪崩光电二极管在能量色散X射线荧光分析中的应用

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The performance of several large-area avalanche photodiodes (LAAPDs) for application to x-ray spectrometry at room temperature was investigated. Optimum detector performance was obtained for gains of about 50-70. Good energy linearity of the LAAPDs' response to x-rays was observed up to energies of about 25 keV. For this energy range the space charge effects are negligible for gains below 100-150. The energy resolutions obtained with LAAPDs can be better than those obtained with proportional counters. Our results indicate that the energy resolution of an LAAPD is better than that of a proportional counter only when the LAAPD maximum dark current is < 300 nA. For this case, minimum detectable x-ray energies of about 1 keV are possible. Spatial non-uniformity is responsible for an absolute increase of 1-2% in energy resolution at 6 keV when illumination of the LAAPD is broadened from 1 mm diameter to full area. Counting rates up to 5 X 10(4) counts s(-1) are possible without significant degradation of detector performance. Copyright (C) 2001 John Wiley & Sons, Ltd. [References: 10]
机译:研究了几种大面积雪崩光电二极管(LAAPD)在室温下应用于X射线光谱分析的性能。获得约50-70的增益可获得最佳的检测器性能。在大约25 keV的能量下,观察到LAAPD对X射线的响应具有良好的能量线性。对于该能量范围,对于低于100-150的增益,空间电荷效应可忽略不计。用LAAPD获得的能量分辨率可能比使用比例计数器获得的能量分辨率更好。我们的结果表明,仅当LAAPD最大暗电流小于300 nA时,LAAPD的能量分辨率才优于比例计数器。对于这种情况,可能的最小可检测X射线能量约为1 keV。当LAAPD的照明范围从1 mm直径扩大到整个面积时,空间不均匀性导致6 keV能量分辨率绝对增加1-2%。计数速率最高可达5 X 10(4)s(-1),而不会显着降低检测器性能。版权所有(C)2001 John Wiley&Sons,Ltd. [参考:10]

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