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Kinetic model for the annealing of fission tracks in minerals and its application to apatite

机译:矿物裂变径迹退火的动力学模型及其在磷灰石中的应用

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摘要

Fission tracks are formed in apatite and other minerals after the passage of fission fragments, which deliver locally intense amounts of energy to the crystal lattice. It is well known that the observable mean track lengths are reduced due to thermal treatment. If the annealing kinetics are known, it is sometimes possible to infer the thermal history a given sample experienced. Given the present lack of appropriate information on track formation, annealing and etching, researchers have used empirical models fitted to laboratory data on annealing to describe the annealing kinetics. In this work, a kinetic model is presented to describe the annealing process. It is based upon some experimental evidence. Instead of furnishing a complete and detailed description, it is intended to relate the observable quantities, namely, etched confined fission tracks, time and temperature based on simple hypotheses using a simplified view of the track.
机译:裂变碎片通过后,在磷灰石和其他矿物中形成裂变径迹,这些裂变碎片将局部大量的能量传递给晶格。众所周知,由于热处理,可观察到的平均轨迹长度减小了。如果已知退火动力学,则有时可以推断给定样品经历的热历史。鉴于目前缺乏有关磁道形成,退火和蚀刻的适当信息,研究人员已使用适合实验室退火数据的经验模型来描述退火动力学。在这项工作中,提出了动力学模型来描述退火过程。它基于一些实验证据。代替提供完整和详细的描述,其旨在基于简单的假设,使用轨道的简化视图来关联可观察的量,即蚀刻的受限裂变轨道,时间和温度。

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