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直接对杰克山锆石的磁性施加年龄约束。

Direct age constraints on the magnetism of Jack Hills zircon.

机构信息

Department of Earth Sciences, University of Cambridge, Downing Street, Cambridge CB2 3EQ, UK.

School of Earth and Planetary Sciences, Curtin University, Bentley, WA 6102, Australia.

出版信息

Sci Adv. 2023 Jan 6;9(1):eadd1511. doi: 10.1126/sciadv.add1511.

Abstract

A potential record of Earth's magnetic field going back 4.2 billion years (Ga) ago is carried by magnetite inclusions in zircon grains from the Jack Hills. This magnetite may be secondary in nature, however, meaning that the magnetic record is much younger than the zircon crystallization age. Here, we use atom probe tomography to show that Pb-bearing nanoclusters in magnetite-bearing Jack Hills zircons formed during two discrete events at 3.4 and <2 Ga. The older population of clusters contains no detectable Fe, whereas roughly half of the younger population of clusters is Fe bearing. This result shows that the Fe required to form secondary magnetite entered the zircon sometime after 3.4 Ga and that remobilization of Pb and Fe during an annealing event occurred more than 1 Ga after deposition of the Jack Hills sediment at 3 Ga. The ability to date Fe mobility linked to secondary magnetite formation provides new possibilities to improve our knowledge of the Archean geodynamo.

摘要

一段可追溯到 42 亿年前(Ga)的地球磁场潜在记录,保存在杰克山锆石颗粒中的磁铁矿包裹体中。然而,这些磁铁矿可能是次生的,这意味着磁场记录比锆石结晶年龄年轻得多。在这里,我们使用原子探针层析成像技术表明,杰克山含磁铁矿的锆石中的含 Pb 纳米团簇是在 34 亿年和<2 Ga 时两个离散事件中形成的。较老的团簇种群不含可检测到的 Fe,而大约一半的年轻团簇种群含 Fe。这一结果表明,形成次生磁铁矿所需的 Fe 是在 34 亿年前之后进入锆石的,并且在 3 Ga 时杰克山沉积物沉积 1 Ga 多之后,发生了退火事件,导致 Pb 和 Fe 的再迁移。将 Fe 迁移与次生磁铁矿形成相关联的定年能力,为提高我们对太古宙地球发电机的认识提供了新的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f34/9821853/e961210dbcb9/sciadv.add1511-f1.jpg

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