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A new method to measure track density and to differentiate nuclear tracks in CR-39 detectors

机译:一种测量CR-39探测器中轨道密度和区分核径迹的新方法

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摘要

An alternative method to count and differentiate nuclear tracks in SSNTD is described. The method is based on the analysis of Fraunhofer diffraction pattern of coherent light produced by tracks of an etched SSNT detector. The diffraction pattern was also simulated by applying computational Fourier Optics. The comparison between results obtained by simulation and by the theoretical model gave satisfactory concordance. The proposed method is capable of differentiating tracks in CR-39 by their diameter and energies. The diameter resolution ranged between 8% and 25%, while the counting error was less than 15%. The discriminating ability to distinguish genuine etched tracks from defects and background anomalies is demonstrated. The incidence angle did not influence significantly the total count and the track parameter measuring capability. Errors due to track overlapping are only significant for track densities higher than 3 x 10(5) cm(-2). (C) 2001 Elsevier Science Ltd. All rights reserved. [References: 6]
机译:描述了一种计数和区分SSNTD中核径迹的替代方法。该方法基于对由蚀刻的SSNT检测器的轨迹产生的相干光的弗劳恩霍夫衍射图的分析。衍射图样也通过应用计算傅立叶光学来模拟。通过仿真与理论模型获得的结果之间的比较给出了令人满意的一致性。所提出的方法能够通过其直径和能量区分CR-39中的轨道。直径分辨率在8%到25%之间,而计数误差小于15%。证明了区分真实蚀刻轨迹与缺陷和背景异常的区分能力。入射角不会显着影响总数和轨道参数测量能力。仅在轨道密度高于3 x 10(5)cm(-2)的情况下,由于轨道重叠所引起的误差才很明显。 (C)2001 Elsevier ScienceLtd。保留所有权利。 [参考:6]

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