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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Experimental evidence for the pressure dependence of fission track annealing in apatite
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Experimental evidence for the pressure dependence of fission track annealing in apatite

机译:磷灰石裂变径迹退火压力依赖性的实验证据

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Fission track analysis has seen a major expansion in application to general geological problems reflecting its advances in understanding the temperature dependence of track annealing and track length distributions. However, considerable uncertainties still persist, in particular concerning the stability of fission tracks subjected to the interactions of environmental physical parameters (e.g. pressure, temperature, stress) and in extrapolation of laboratory data to geological time scales. In this work, we studied the fading behavior of spontaneous fission tracks in basic apative [hexagonal Ca_5(PO_4)_3(OH,F,Cl)] when exposed simultaneously to laboratory pressures, temperatures and stress over varying time spans. The experiments showed that track fading is a complex recovery mechanism, which is extremely sensitive to the coupling of these three parameters. In particular, a strong decrease in the fission track fading rate was observed as a function of increasing pressure. And a newly temperature-independent dramatic increase in fission track recovery was observed as a function of stress. Consequently, (1) the stability field of fission tracks in apatite increases towards temperatures higher than 110 ℃ depending on the absolute pressure; (2) closure ages in apatite are underestimated (> 100% for an ideal geothermobarometric gradient); (3) related exhumation and erosion rates are overestimated above the closure temperature and underestimated below the closure temperature; and (4) since the widely applied statistical description of thermally induced fading kinetics does not account for the influences of either pressure or stress and is based on fission track annealing data produced at ambient pressure, the accuracy in extrapolating fission track data to geological time scales and in their application to dynamic system must be cast into doubt.
机译:裂变径迹分析在一般地质问题上的应用有了很大的扩展,这反映了裂变径迹分析在理解磁道退火温度和磁道长度分布的温度依赖性方面的进步。但是,仍然存在相当多的不确定性,特别是在受环境物理参数(例如压力,温度,应力)相互作用以及将实验室数据外推到地质时标上的裂变径迹的稳定性方面。在这项工作中,我们研究了在基本缓和型[六角形Ca_5(PO_4)_3(OH,F,Cl)]中自发裂变径迹在不同时间跨度上同时暴露于实验室压力,温度和应力时的褪色行为。实验表明,磁迹衰落是一个复杂的恢复机制,它对这三个参数的耦合极为敏感。特别地,观察到裂变径迹衰落速率的强烈降低是压力增加的函数。并观察到裂变径迹恢复的新的与温度无关的急剧增加是应力的函数。因此,(1)取决于绝对压力,磷灰石中裂变径迹的稳定场在温度高于110℃时增加; (2)磷灰石的封闭年龄被低估了(对于理想的地热气压梯度,> 100%); (3)在关闭温度以上高估了相关的挖掘和侵蚀速率,在关闭温度以下低估了相关的挖掘和侵蚀速率; (4)由于广泛使用的热衰落动力学的统计描述没有考虑压力或应力的影响,并且基于在环境压力下产生的裂变径迹退火数据,因此将裂变径迹数据外推到地质时标的准确性并且在将其应用于动态系统时必须引起怀疑。

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