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In situ TEM observation of alpha-particle induced annealing of radiation damage in Durango apatite

机译:杜兰戈磷灰石中α粒子引起的辐射损伤退火的原位TEM观察

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摘要

A major issue in thermochronology and U-Th-Pb dating is the effect of radiation damage, created by α-recoils from α-decay events, on the diffusion of radiogenic elements (e.g., He and Pb) in host mineral. Up until now, thermal events have been considered as the only source of energy for the recovery of radiation-damage. However, irradiation, such as from the α-particle of the α-decay event, can itself induce damage recovery. Quantification of radiation-induced recovery caused by α-particles during α-decay events has not been possible, as the recovery process at the atomic-scale has been difficult to observe. Here we present details of the dynamics of the amorphous-to-crystalline transition process during α-particle irradiations using in situ transmission electron microscopy (TEM) and consecutive ion-irradiations: 1 MeV Kr2+ (simulating α-recoil damage), followed by 400 keV He+ (simulating α-particle annealing). Upon the He+ irradiation, partial recrystallization of the original, fully-amorphous Durango apatite was clearly evident and quantified based on the gradual appearance of new crystalline domains in TEM images and new diffraction maxima in selected area electron diffraction patterns. Thus, α-particle induced annealing occurs and must be considered in models of α-decay event damage and its effect on the diffusion of radiogenic elements in geochronology and thermochronology.
机译:热年代学和U-Th-Pb定年法中的一个主要问题是由α衰变事件产生的α反冲产生的辐射损伤对放射性矿物元素(例如He和Pb)在宿主矿物中扩散的影响。到目前为止,热事件一直被认为是恢复辐射损伤的唯一能源。但是,辐射(例如来自α衰变事件的α粒子)本身会引起损伤恢复。由于难以观察到原子级的恢复过程,因此无法量化由α粒子在α衰变事件中引起的辐射诱导的恢复。在这里,我们介绍了使用原位透射电子显微镜(TEM)和连续离子辐照在α粒子辐照过程中非晶-晶体过渡过程的动力学细节:1 MeV Kr 2 + (模拟α后座力破坏),然后是400 keV He + (模拟α粒子退火)。在He + 辐照下,基于TEM图像中新的晶畴的逐渐出现和选定区域电子衍射中新的衍射最大值,原始,完全非晶态的Durango磷灰石的部分再结晶是明显可见的并已量化。模式。因此,发生α粒子诱导的退火,必须在α衰变事件损害及其对地球年代学和热年代学中放射源元素扩散的影响模型中加以考虑。

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