首页> 外文期刊>Icarus: International Journal of Solar System Studies >Zumba crater, Daedalia Planum, Mars: Geologic investigation of a young, rayed impact crater and its secondary field
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Zumba crater, Daedalia Planum, Mars: Geologic investigation of a young, rayed impact crater and its secondary field

机译:火星Daedalia Planum的Zumba陨石坑:一个年轻的射线撞击陨石坑及其次生田的地质调查

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Zumba is a similar to 2.9 km diameter rayed crater on Mars located on extensive lava plains in Daedalia Planum to the southwest of Arsia Mons. It is a well-preserved young crater with large ejecta rays that extend for hundreds of kilometers from the impact site. The rays are thermally distinct from the background lava flows in THEMIS daytime and nighttime thermal infrared data, a unique characteristic among martian rayed craters. Concentrated within the rays are solitary or dense clusters of secondary craters with associated diffuse dark-toned deposits along with fewer secondary craters lacking dark-toned deposits. Using CTX images, we have mapped secondary craters with dark-toned deposits, collectively termed "secondary fields", to investigate their distribution as a function of distance from the impact site. The mapped secondary field was then used to investigate various aspects of the crater-forming event such as the surface angle and direction of the projectile, the effect of secondary craters on surface age estimates, and the number of secondary craters produced by the impact event. From our mapping, a total of 13,064 secondary fields were documented out to a 200 km radial distance beyond a 15 km-wide non-secondary zone around Zumba crater. Results show that the highest areal coverage of secondary fields occurs within 100 km of Zumba and within its rays, decreasing radially with distance to a background scattering of small secondary fields that are <10 km(2) in size (similar to 91.9% of the total population). The strong east-west asymmetry of crater rays and low areal coverage of fields to the south of Zumba correlate well with studies of Zumba impact melt deposits, indicating a moderately oblique impact projectile coming from the south. Using primary craters in a similar to 101 km(2) sample region and all craters (primaries and secondaries) from 43 select secondary fields in two map sectors in the study area, we obtain ages of similar to 580 +/- 100 Ma and similar to 650 +/- 70 Ma, respectively, for the lava flows into which Zumba impacted. These ages are consistent with and intermediate to 0.1-1 Ga volcanic flow units within and near Daedalia Planum. For craters within the secondary fields, a log differential plot of the data shows a pronounced downward deflection of the binned points for craters <100 m in diameter. This is an indication that possible aeolian erosion and deposition, in combination with emplacement and remobilization of Zumba ejecta, have modified the lava flow surfaces in Daedalia Planum over time. Our crater count results also show that even in the presence of large numbers of secondary craters, the age of the primary crater surface can still be identified from the data for craters >100 m. We estimate that similar to 352,000 secondary craters were produced by the Zumba impact event. 2016 Elsevier Inc. All rights reserved.
机译:尊巴(Zumba)类似于火星上直径2.9公里的射线火山口,位于Arsia Mons西南的Daedalia Planum广阔的熔岩平原上。它是一个保存完好的年轻陨石坑,带有巨大的喷射射线,从撞击点延伸出数百公里。射线与THEMIS白天和夜间的热红外数据中的背景熔岩流在温度上是不同的,这是火星射线陨石坑中的独特特征。射线中集中的是次级火山口的孤簇或密集簇,伴有相关的弥散的深色调沉积物,而缺少深色调沉积物的次级火山口则更少。使用CTX图像,我们绘制了带有深色调沉积物的次生陨石坑(统称为“次生场”),以调查其分布与距撞击点距离的关系。然后,使用映射的次级场来研究火山口形成事件的各个方面,例如弹丸的表面角度和方向,次级火山口对表面年龄估计的影响以及撞击事件产生的次级火山口的数量。根据我们的地图,在Zumba火山口周围15公里宽的非中学区以外的200 km径向距离内,总共记录了13,064个次级场。结果表明,次要场的最高区域覆盖范围发生在Zumba的100 km范围内及其射线内,并且随着距背景散射的大小小于10 km(2)的小次要场的背景辐射而径向减小(约占91.9%的子场)。总人口)。 Zumba南部强烈的东西向不对称的火山口射线和较低的区域面积覆盖率与Zumba冲击熔体沉积物的研究密切相关,表明来自南部的冲击斜射弹体中等。使用类似于101 km(2)样本区域的主要陨石坑,并使用研究区域中两个地图扇区中43个选择的次要字段中的所有陨石坑(主要和次要坑),我们获得的年龄类似于580 +/- 100 Ma Zumba影响的熔岩流分别达到650 +/- 70 Ma。这些年龄与Daedalia Planum内及附近的0.1-1 Ga火山流单位相符并处于中间。对于次级场内的陨石坑,数据的对数微分图显示了直径小于100 m的陨石坑的合并点有明显的向下偏转。这表明随着时间的流逝,可能的风蚀和沉积以及Zumba射出物的进驻和移动,已经改变了Daedalia Planum的熔岩流面。我们的陨石坑计数结果还表明,即使存在大量次生陨石坑,仍可以从大于100 m的陨石坑的数据中识别出主要陨石坑的年龄。我们估计Zumba撞击事件产生了近352,000个次要陨石坑。 2016 Elsevier Inc.保留所有权利。

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