Turonian(晚白垩纪)一次神秘的外星3he异常期间的微陨石通量记录

E. Martin, B. Schmitz, A. Montanari
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引用次数: 6

摘要

我们利用土尔onian期(约92-90 Ma)约2 m.y.的3He升高区间的地外尖晶石颗粒分布重建了晚白垩世微陨石通量记录。在意大利Bottaccione剖面约30米的石灰岩序列中,3He偏移范围内的979公斤岩石共产生603个尖晶石颗粒(32-355µm大小)。其中115个为平衡的普通球粒铬铁矿(EC)。在3He偏移期间,每公斤沉积物中EC颗粒的数量没有变化,但h球粒颗粒占主导地位,超过L和LL颗粒(70%,27%和3%),与偏移前的间隔相反,其中三组之间的关系(50%,44%和6%)与今天和早白垩纪相似。有趣的是,在3He异常中,富钒铬尖晶石也增加了五倍,可能来自无球粒陨石和不平衡的普通球粒陨石。3He异常具有不寻常的尖尖和时间进展,目前的外星尘埃传输模型无法解释。我们的数据不支持先前关于彗星或小行星阵雨可能与产生尘埃的月球撞击有关的建议。相反,尖晶石数据初步表明,小行星带受到了更普遍的扰动,微陨石的不同母体或来源区域同时受到影响。为了解决3He异常的成因,需要回收更多的尖晶石颗粒,并对颗粒进行更多的氧同位素分析。(少)
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A record of the micrometeorite flux during an enigmatic extraterrestrial3He anomaly in the Turonian (Late Cretaceous)
We reconstructed a record of the micrometeorite flux in the Late Cretaceous using the distribution of extraterrestrial spinel grains across an ~2 m.y. interval of elevated 3He in the Turonian Stage (ca. 92–90 Ma). From ~30 m of the limestone succession in the Bottaccione section, Italy, a total of 979 kg of rock from levels below and within the 3He excursion yielded 603 spinel grains (32–355 µm size). Of those, 115 represent equilibrated ordinary chondritic chromite (EC). Within the 3He excursion, there is no change in the number of EC grains per kilogram of sediment, but H-chondritic grains dominate over L and LL grains (70%, 27%, and 3%), contrary to the interval before the excursion, where the relation between the three groups (50%, 44%, and 6%) is similar to today and to the Early Cretaceous. Intriguingly, within the 3He anomaly, there is also a factor-of-five increase of vanadium-rich chrome spinels likely originating from achondritic and unequilibrated ordinary chondritic meteorites. The 3He anomaly has an unusually spiky and temporal progression not readily explained by present models for delivery of extraterrestrial dust to Earth. Previous suggestions of a relation to a comet or asteroid shower possibly associated with dust-producing lunar impacts are not supported by our data. Instead, the spinel data preliminary indicate a more general disturbance of the asteroid belt, where different parent bodies or source regions of micrometeorites were affected at the same time. More spinel grains need to be recovered and more oxygen isotopic analyses of grains are required to resolve the origin of the 3He anomaly. (Less)
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