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Improved modeling of fission-track annealing in apatite

机译:磷灰石裂变径迹退火的改进建模

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Two abiding issues impact the reliability of apatite fission-track analysis and thermal history inversion in particular: reproducibility of track-length measurements and variability of annealing kinetics. In the companion to this paper, we addressed the first by demonstrating that using c-axis projection to normalize track lengths for crystallographic angle improves reproducibility among measurements acquired by Barbarand et al. (2003a, 2003b). We continue here by looking at the effect of c-axis projection on extrapolation of laboratory measurements to geological time scales. We find that c-axis projection improves agreement between predictions of empirical annealing models fit to measurements by Barbarand et al. (2003b) analysts 1 and 3, further corroborating its effectiveness in ameliorating observer bias. Furthermore, these annealing models closely match predictions from the Carlson et al. (1999) annealing data set, which was obtained by a different analyst using a different etching protocol. Normalizing for angle thus allows us to create a single annealing model that encompasses both data sets and etching techniques. By combining the different compositional varieties of apatite in the two data sets, the resulting model provides an improved basis for estimating apatite kinetic properties in unknowns using proxies such as composition, etch-figure dimension, and unit-cell parameters. Predictions from a fanning curvilinear model form accord with conventional expectations of annealing at high and low temperatures, and its use for thermal history inversion will not introduce spurious late cooling events.
机译:两个持续存在的问题会影响磷灰石裂变径迹分析的可靠性和热历史反演,特别是径迹长度测量的可再现性 和退火动力学的可变性。 在本文的同伴中,我们通过演示 解决了第一个问题,即使用c轴投影对 的结晶学角度归一化轨道长度可以改善测量之间的可重复性 < / sup>由Barbarand等人收购。 (2003a,2003b)。我们在这里 继续研究c轴投影对实验室测量向地质时标外推 的影响。我们发现 c轴投影改善了经验退火模型的预测 与Barbarand等人的测量结果之间的一致性。 (2003b) 分析人员1和3,进一步证实了其在 缓解观察者偏见方面的有效性。此外,这些退火模型 与Carlson等人的预测非常接近。 (1999)退火 数据集,该数据集是由另一位分析师使用 不同蚀刻协议获得的。因此,对角度进行归一化允许 us创建一个包含 数据集和蚀刻技术的单一退火模型。通过组合两个数据集中不同组成的磷灰石 的结果, 结果模型提供了改进的基础,可使用以下方法估算未知物中的磷灰石动力学特性。代理,例如成分, 蚀刻图尺寸和晶胞参数。扇形曲线模型形式的预测 符合高温和低温退火的常规 预期,并且不会引入 用于热历史反演虚假的 后冷却事件。

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  • 来源
    《American Mineralogist 》 |2007年第6期| 799-810| 共12页
  • 作者单位

    Jackson School of Geosciences, University of Texas, Austin, Texas, U.S.A.;

    Research School of Earth Sciences at University College of London, U.K.;

    Apatite to Zircon, Inc., Viola, Idaho, U.S.A.;

    Département des Sciences de la Terre, Université Paris Sud, Orsay-Cedex, France;

    Research School of Earth Sciences at University College of London, U.K.;

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