紫外光、太阳辐射、XeCl激光和氙弧灯对CR-39核径迹记录性能的影响

F. Abu-Jarad, M.A. Islam, I. Abu-Abdoun, M.A. Khan
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引用次数: 20

摘要

CR-39核轨道探测器在空气中暴露于各种光源,如三个紫外线灯(λ=253.7300和350nm)、一个氯化氙准分子激光器(λ=308nm)、氙弧灯和阳光。前三个来源的探测器在大剂量下出现了明显的颜色变化(发黄)。暴露于u.v.光源导致表面退化,并导致在253.7和350nm波长下体(Vb)和道(Vt)蚀刻速率的增加,而在300nm没有观察到这种增加。为了解释这种奇怪的行为,还研究了暴露于各种u.v.源后获得的CR-39的u.v.吸收光谱。然而,没有明确的答案出现。另一方面,对于仅暴露于253.7和350nm的样品,观察到检测器灵敏度的轻微增强(V=Vt/Vb)。在350nm的波长下,不同的曝光时间导致不同的蚀刻诱导时间。事实上,裂变碎片的蚀刻诱导时间从未暴露样品的28分钟缩短到暴露86小时的样品的2分钟,并且Vb随着塑料的深度而降低。另一方面,暴露于准分子激光导致表面的明显软化,累积能量密度高达30J cm-2,硬化从30到230J cm-2开始。然而,发现激光硬化在40J cm-2的暴露剂量以上饱和。当暴露在氙弧灯的高剂量下时,探测器的表面也被损坏。然而,对于较短的曝光时间,效果是Vb和Vt略有下降。最后,在自然阳光下的受控曝光导致Vb和V都增加,直到曝光30小时,然后开始饱和,而V没有增强。长曝光(2个月)导致Vb恒定,并且Vt和V随着蚀刻时间的增加而增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of ultraviolet light, solar radiation, XeCl laser and xenon arc lamp on the nuclear track recording properties of CR-39

CR-39 nuclear track detectors were exposed in air to various light sources such as three ultraviolet (u.v.) lamps (λ = 253.7, 300 and 350 nm), a xenon chloride (XeCl) excimer laser (λ = 308 nm), a xenon arc lamp and sunlight. A visible change of colour (yellowing) of detectors under heavy doses was noticed with the first three sources. The exposure to u.v. light sources resulted in degradation of the surface and in an increase of the bulk (Vb) and track (Vt) etch rates at wavelengths of 253.7 and 350 nm, while at 300 nm no such increase was observed. In an attempt to explain this odd behaviour u.v. absorption spectra of CR-39 obtained after exposure to the various u.v. sources were also studied. However, no clear answer emerged. On the other hand, a slight enhancement in detector sensitivity (V = Vt/Vb) was observed for the samples exposed to 253.7 and 350 nm only. At a wavelength of 350 nm different exposure times resulted in different etch induction times. In fact, etch induction time for fission fragments shortened from 28 min for unexposed samples to 2 min in the samples exposed for 86 h and Vb decreased with the depth of the plastic. On the other hand, the exposure to an excimer laser resulted in apparent softening of the surfaces for a cumulative energy density up to 30 J cm-2 and hardening started from 30 up to 230 J cm-2. The laser hardening, however, was found to saturate above an exposure dose of 40 J cm-2. The surface of the detectors was also damaged when exposed to a high dose from a xenon arc lamp. However, for shorter exposure times, the effect was a slight decrease in Vb and Vt. Finally, a controlled exposure to natural sunlight caused an increase of both the Vb and Vt up to 30 h of exposure, and saturation started after that, while no enhancement was noticed in V. Long exposures (2 months) resulted in constant Vb, and increase in Vt and V with etching time.

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