潜伏在瑞典北部阴影中的冰河时期撞击结构

IF 2.2 4区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS Meteoritics & Planetary Science Pub Date : 2024-11-05 DOI:10.1111/maps.14280
C. Alwmark, G. G. Kenny, S. Alwmark, P. Minde, J. Plado, S. Hietala, M. J. Whitehouse
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摘要

在这里,我们报告了在瑞典最北部的Kitkiöjärvi小镇附近的一个冰川河流沉积物的砾石坑中发现的四个具有熔融结构的岩石样本的发现。样品由花岗岩碎屑组成,嵌套在棕色细粒熔融基质中。样品中均含有石英颗粒和/或碎屑,表现出与冲击变质作用的晶体平面平行的多组平面变形特征。样品中还含有前Reidite In Granular Neoblastic (FRIGN)锆石。因此,我们得出结论,所调查的样品代表冲击熔融岩。我们利用冲击锆石的二次离子质谱分析得出了658.9±6.9 Ma(低温系)的U-Pb协和年龄,作为形成熔融岩石的撞击事件年龄的最佳估计。其中两个样本的锆石颗粒产生了更年轻的低截距年龄,这增加了样本来自不同年龄的多次撞击事件的可能性。虽然我们不能排除这种可能性,但我们从富含碎屑的熔融岩中解释了较年轻的年龄,反映了与撞击无关的Pb损失事件,并表明所有样品可能来自相同的结构。对该地区冰川史的分析,以及相对较高的发现频率(总共5次,因为2018年在坑中发现了一块类似的融化岩石),表明样本是从西南方向进行短途冰川运输的。由于瑞典在该区域内没有已知的撞击结构和/或类似的年龄,我们得出结论,在砾石坑附近的某个地方,瑞典可能还没有发现一个古老的(已知最古老的)撞击结构。
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A Cryogenian impact structure lurking in the shadows of northern Sweden

Here we report on findings for four rock samples with melt texture found in a gravel pit within a glaciofluvial deposit near the small town of Kitkiöjärvi in northernmost Sweden. The samples are comprised of granitic clasts embedded in a brown fine-grained melt matrix. The samples all contain quartz grains and/or clasts exhibiting multiple sets of planar deformation features oriented parallel to crystallographic planes characteristic of shock metamorphism. The samples also contain Former Reidite In Granular Neoblastic (FRIGN) zircon. We therefore conclude that the investigated samples represent impact melt rock. We interpret a U-Pb concordia age of 658.9 ± 6.9 Ma (Cryogenian) derived using secondary-ion mass spectrometry analysis of shocked zircon, as the best estimate for the age of the impact event that formed the melt rocks. Zircon grains from two of the samples yield younger lower intercept ages, raising the possibility that the samples came from multiple impact events of different ages. Although we cannot exclude this possibility, we interpret the younger ages from the clast-rich melt rocks to reflect non-impact-related Pb loss events and suggest that all samples likely came from the same structure. Analysis of the glaciofluvial history of the region, along with the relatively high frequency of finds (five in total, as one similar melt rock was found in the pit in 2018), points to a short-distance glacial transportation of the samples from the southwest. Since there are no known impact structures in Sweden within that area and/or of similar age, we conclude that an old (the oldest known yet) impact structure in Sweden potentially is yet to be discovered somewhere in the vicinity of the gravel pit.

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来源期刊
Meteoritics & Planetary Science
Meteoritics & Planetary Science 地学天文-地球化学与地球物理
CiteScore
3.90
自引率
31.80%
发文量
121
审稿时长
3 months
期刊介绍: First issued in 1953, the journal publishes research articles describing the latest results of new studies, invited reviews of major topics in planetary science, editorials on issues of current interest in the field, and book reviews. The publications are original, not considered for publication elsewhere, and undergo peer-review. The topics include the origin and history of the solar system, planets and natural satellites, interplanetary dust and interstellar medium, lunar samples, meteors, and meteorites, asteroids, comets, craters, and tektites. Our authors and editors are professional scientists representing numerous disciplines, including astronomy, astrophysics, physics, geophysics, chemistry, isotope geochemistry, mineralogy, earth science, geology, and biology. MAPS has subscribers in over 40 countries. Fifty percent of MAPS'' readers are based outside the USA. The journal is available in hard copy and online.
期刊最新文献
Issue Information Cover 2004 Barringer Medal for Peter Schultz A reappraisal of the petrogenesis of Apollo 17 lunar dunites 72415-72417: Relics of the deep lunar mantle? 2007 Service Award for John Schutt
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