吉林通化白芨峰冲击构造的发现

IF 4.8 1区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Matter and Radiation at Extremes Pub Date : 2023-09-01 DOI:10.1063/5.0172186
Ming Chen, Yang Lu, Jiahao Ning, Wenge Yang, J. Shu, Ho-Kwang Mao
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引用次数: 0

摘要

在中国东北吉林省通化市的白积峰山上发现了一个直径1400米的撞击构造,它是由一次火流星撞击形成的。冲击构造在山顶呈环状凹陷形式,位于以元古代砂岩和侏罗纪花岗岩为主的基底中。白鸡峰山顶分布着大量以砂岩为主的岩屑,少量花岗岩。在岩石中的石英和从凹陷内部表面采集的矿物碎屑中发现了平面变形特征。石英中索引的pdf格式包括{101�3}、{101�2}和{101�1}。这些pdf文件的存在为冲击变质作用和结构的冲击起源提供了诊断证据。撞击事件发生在侏罗纪时期之后,可能更晚。
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Discovery of the Baijifeng impact structure in Tonghua, Jilin, China
An impact structure 1400 m in diameter, formed by a bolide impact, has been discovered on Baijifeng Mountain in Tonghua City in Northeast China’s Jilin province. The impact structure takes the form of a cirque-shaped depression on the top of the mountain and is located in a basement mainly composed of Proterozoic sandstone and Jurassic granite. A large number of rock fragments composed mainly of sandstone, with a small amount of granite, are distributed on the top of Baijifeng Mountain. Planar deformation features (PDFs) have been found in quartz in the rock and mineral clasts collected from the surface inside the depression. The forms of the PDFs indexed in the quartz include among others, {101̄3}, {101̄2}, and {101̄1}. The presence of these PDFs provides diagnostic evidence for shock metamorphism and the impact origin of the structure. The impact event took place after the Jurassic Period and probably much later.
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来源期刊
Matter and Radiation at Extremes
Matter and Radiation at Extremes Physics and Astronomy-Atomic and Molecular Physics, and Optics
CiteScore
8.60
自引率
9.80%
发文量
160
审稿时长
15 weeks
期刊介绍: Matter and Radiation at Extremes (MRE), is committed to the publication of original and impactful research and review papers that address extreme states of matter and radiation, and the associated science and technology that are employed to produce and diagnose these conditions in the laboratory. Drivers, targets and diagnostics are included along with related numerical simulation and computational methods. It aims to provide a peer-reviewed platform for the international physics community and promote worldwide dissemination of the latest and impactful research in related fields.
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