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校准地球历史的岩石时钟。

Synchronizing rock clocks of Earth history.

作者信息

Kuiper K F, Deino A, Hilgen F J, Krijgsman W, Renne P R, Wijbrans J R

机构信息

Faculty of Geosciences, Department of Earth Sciences, Utrecht University, Budapestlaan 4, 3584 CD Utrecht, Netherlands.

出版信息

Science. 2008 Apr 25;320(5875):500-4. doi: 10.1126/science.1154339.

Abstract

Calibration of the geological time scale is achieved by independent radioisotopic and astronomical dating, but these techniques yield discrepancies of approximately 1.0% or more, limiting our ability to reconstruct Earth history. To overcome this fundamental setback, we compared astronomical and 40Ar/39Ar ages of tephras in marine deposits in Morocco to calibrate the age of Fish Canyon sanidine, the most widely used standard in 40Ar/39Ar geochronology. This calibration results in a more precise older age of 28.201 +/- 0.046 million years ago (Ma) and reduces the 40Ar/39Ar method's absolute uncertainty from approximately 2.5 to 0.25%. In addition, this calibration provides tight constraints for the astronomical tuning of pre-Neogene successions, resulting in a mutually consistent age of approximately 65.95 Ma for the Cretaceous/Tertiary boundary.

摘要

地质时间尺度的校准是通过独立的放射性同位素和天文测年实现的,但这些技术产生的差异约为1.0%或更大,限制了我们重建地球历史的能力。为了克服这一根本性挫折,我们比较了摩洛哥海洋沉积物中火山灰层的天文年龄和40Ar/39Ar年龄,以校准鱼峡谷透长石的年龄,它是40Ar/39Ar地质年代学中使用最广泛的标准。这次校准得出了一个更精确的较老年龄,即2820.1±0.046百万年前(Ma),并将40Ar/39Ar方法的绝对不确定性从约2.5%降低到0.25%。此外,这次校准为新近纪之前的层序的天文调谐提供了严格的限制,得出白垩纪/第三纪边界的相互一致年龄约为65.95 Ma。

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