美国内华达州东北部东洪堡山脉变质核杂岩中渐新世糜棱岩剪切和中新世拆离断裂

IF 1.7 3区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY
Geosphere Pub Date : 2023-07-20 DOI:10.1130/ges02619.1
A. Zuza, Seth M. Dee
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引用次数: 0

摘要

变质核杂岩中脆性拆离断层和韧性剪切带之间的关系往往是模糊的。尽管通常认为这两个结构在运动学上是连接的,并且在遗传学上是相关的,但很少直接观察到这种耦合。在这里,我们进行了详细的实地调查,以探索内华达州东北部红宝石山-东洪堡山脉变质核杂岩中的分离断层和糜棱剪切带之间的联系。现场观测以及新发表的地质年代学表明,渐新世顶部至西部糜棱岩剪切带被约17Ma的近垂直玄武岩岩脉横切,而这些岩脉又被中新世中期的拆离断层截断。分离断层似乎集中在页岩地层和中生代逆冲断层中预先存在的薄弱地带。我们解释说,渐新世糜棱岩剪切带是在大量深成作用和部分熔融过程中对圆顶上升流的响应而产生的,这明显早于中新世中期区域伸展和滑脱的开始。我们的模型简化了低角度拆离断层的力学问题,因为未来拆离断层带开发的薄弱带存在初始倾斜。这一机制可能对大盆地东部许多明显的低角度正断层具有重要意义。我们认为,对于北美科迪勒拉的许多变质核杂岩来说,糜棱岩剪切和脱离断层的时间去耦可能是重要的,但被低估了。在这种情况下,早期的始新世-渐新世浮力隆起可能预处理了地壳被中新世伸展重新激活,从而解释了结构之间的空间关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Decoupled Oligocene mylonitic shearing and Miocene detachment faulting in the East Humboldt Range metamorphic core complex, northeast Nevada, USA
The relationships between brittle detachment faulting and ductile shear zones in metamorphic core complexes are often ambiguous. Although it is commonly assumed that these two structures are kinematically linked and genetically related, direct observations of this coupling are rare. Here, we conducted a detailed field investigation to probe the connection between a detachment fault and mylonitic shear zone in the Ruby Mountain–East Humboldt Range metamorphic core complex, northeast Nevada. Field observations, along with new and published geochronology, demonstrate that Oligocene top-to-the-west mylonitic shear zones are crosscut by ca. 17 Ma subvertical basalt dikes, and these dikes are in turn truncated by middle Miocene detachment faults. The detachment faults appear to focus in preexisting weak zones in shaley strata and Mesozoic thrust faults. We interpret that the Oligocene mylonitic shear zones were generated in response to domal upwelling during voluminous plutonism and partial melting, which significantly predated the middle Miocene onset of regional extension and detachment slip. Our model simplifies mechanical issues with low-angle detachment faulting because there was an initial dip to the weak zones exploited by the future detachment-fault zone. This mechanism may be important for many apparent low-angle normal faults in the eastern Great Basin. We suggest that the temporal decoupling of mylonitic shearing and detachment faulting may be significant and underappreciated for many of the metamorphic core complexes in the North American Cordillera. In this case, earlier Eocene–Oligocene buoyant doming may have preconditioned the crust to be reactivated by Miocene extension thus explaining the spatial relationship between structures.
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来源期刊
Geosphere
Geosphere 地学-地球科学综合
CiteScore
4.40
自引率
12.00%
发文量
71
审稿时长
6-12 weeks
期刊介绍: Geosphere is GSA''s ambitious, online-only publication that addresses the growing need for timely publication of research results, data, software, and educational developments in ways that cannot be addressed by traditional formats. The journal''s rigorously peer-reviewed, high-quality research papers target an international audience in all geoscience fields. Its innovative format encourages extensive use of color, animations, interactivity, and oversize figures (maps, cross sections, etc.), and provides easy access to resources such as GIS databases, data archives, and modeling results. Geosphere''s broad scope and variety of contributions is a refreshing addition to traditional journals.
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