Study of nuclear track parameters of normal incident alpha particles on CR-39 detector

Sabreen Malo, Yaser Qasim, M. Al-Jubbori
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Abstract

In this paper, Solid State Nuclear Detector (SSNTD) CR-39 was broken into many fragments with areas of (1x1) cm. The samples were irradiated using Am source. The measurements were taken at normal incident angle of the alpha particles for energies (3.17, 3.59 and 4.13) MeV respectively. The samples were etched using sodium hydroxide solution (NaOH 6N, 70±1 C) for time interval of 0.25 h. The optical microscope provided with digital camera was used to preview the track profile formed in CR-39. This allowed measurement of the track length and in turn the track length as a function of the etching time . The track growth rate, track etch rate and track rate ratio were also investigated as a function of many parameters such as etching time, track depth and residual range. The study showed a good consistency among the investigated parameters . The curves of the track etch rate and track etch ratio manifested a consistency with Brack curve who interested in studying the linear energy loss in materials where the maximum energy loss occurs at the end of the alpha particle range.
CR-39探测器法向入射α粒子核径迹参数研究
本文将固体核探测器(Solid State Nuclear Detector, SSNTD) CR-39分解成许多面积为(1x1) cm的碎片。样品采用Am源辐照。在能量分别为(3.17,3.59和4.13)MeV的α粒子的法向入射角下进行测量。采用氢氧化钠溶液(NaOH 6N, 70±1℃)蚀刻,时间间隔为0.25 h。用数码相机光学显微镜观察CR-39中形成的轨迹轮廓。这允许轨道长度的测量,反过来轨道长度作为蚀刻时间的函数。研究了径迹生长速率、径迹蚀刻速率和径迹率比与蚀刻时间、径迹深度和残留范围等参数的关系。研究表明,所研究的参数具有较好的一致性。轨迹刻蚀率曲线和轨迹刻蚀比曲线与研究材料线性能量损失的Brack曲线一致,最大能量损失发生在α粒子范围的末端。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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