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40Ar/39Ar dating of Glacial Termination VI: constraints on the duration of Marine Isotopic Stage 13

机译:冰川终止VI的40Ar / 39Ar年代:海洋同位素阶段13持续时间的限制

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摘要

We present four new 40Ar/39Ar ages of tephra layers from an aggradational succession (Valle Giulia Formation) near the mouth of the Tiber Valley in Rome that was deposited in response to sea-level rise during Marine Isotopic Stage (MIS) 13. These new ages, integrated with seven previously determined ages, provide the only extant independent, radioisotopic age constraint on glacial termination VI and on the duration of MIS 13 sea-level rise. The new geochronologic constraints suggest a long duration for the period of sea-level rise (533 ± 2 through 498 ± 2 ka) encompassing two consecutive positive peaks of the δ18O curve (substages 13.3 and 13.1). Consistently, the litho-stratigraphic features of the sedimentary record account for two aggradational phases separated by an intervening erosional phase. Moreover, the ages obtained for this study give us the opportunity to compare the timing of the sea-level fluctuations inferred from the stratigraphic record and that provided by the astrochronologic calibration of the Oxygen isotopic curves, and to assess the calibrations of 40Ar/39Ar standards. Results of this comparison indicate that the best match is for an age of 1.186 Ma for the Alder Creek Rhyolite sanidine and 28.201 Ma for the Fish Canyon Tuff sanidine.
机译:我们提出了来自罗马台伯河谷河口附近的一次连续演替(Valle Giulia形成)的四个新的特弗拉层的 40 Ar / 39 Ar年龄到海洋同位素阶段(MIS)13的海平面上升。这些新年龄与七个先前确定的年龄相结合,为冰川终止VI和MIS 13海平面上升的持续时间提供了唯一现存的独立的放射性同位素年龄约束。新的地质年代学约束表明海平面上升期间的持续时间较长(533±2至498±2 ka),其中包括δ 18 O曲线的两个连续的正峰值(子阶段13.3和13.1)。 。一致地,沉积记录的岩石地层特征解释了由一个侵蚀相分隔的两个凝集相。此外,本研究获得的年龄使我们有机会比较由地层记录推断出的海平面波动的时间与氧气同位素曲线的天文年标提供的时间,并评估 40 Ar / 39 Ar标准。比较结果表明,最合适的年龄是Alder Creek流纹岩Sanidine的年龄为1.186 Ma,Fish Canyon Tuff Sanidine的年龄为28.201 Ma。

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