Evidence for regionally continuous Early Cretaceous sinistral shear zones along the western flank of the Coast Mountains, coastal British Columbia, Canada

IF 1.7 3区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY
Geosphere Pub Date : 2022-12-12 DOI:10.1130/ges02502.1
Jordan W. Wang, G. Gehrels, P. Kapp, K. Sundell
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引用次数: 0

Abstract

The plate-boundary conditions of the Mesozoic North American Cordillera remain poorly constrained, but most studies support large (>800 km) southward motion of the Insular and Intermontane superterranes during Jurassic–Cretaceous time. An implicit feature in these models of large coastwise displacements is the presence of one or more continental-scale sinistral strike-slip faults that could have dismembered and displaced terrane fragments southward along the western margin of North America prior to the onset of mid-Cretaceous shortening and dextral strike-slip faulting. In this study, we documented a system of sinistral intra-arc shear zones within the Insular superterrane that may have accommodated large southward motion. Employment of a new large-n igneous zircon U-Pb method more than doubled the precision of measurements obtained by laser ablation–inductively coupled plasma–mass spectrometry (from ~1% to 0.5%) and allowed us to demonstrate the close temporal-spatial relationship between magmatism and deformation by dating comagmatic crosscutting phases. Crystallization ages of pre-, syn-, and postkinematic intrusions show that the intra-arc shear zones record an Early Cretaceous phase of sinistral oblique convergence that terminated between 107 and 101 Ma. Shear zone cessation coincided with: (1) collapse of the Gravina basin, (2) development of a single voluminous arc that stitched the Insular and Intermontane superterranes together, and (3) initiation of east-west contractional deformation throughout the Coast Mountains. We interpret these concurrent tectono-magmatic events to mark a shift in plate kinematics from a sinistral-oblique system involving separate terranes and intervening ocean basins to a strongly convergent two-plate margin involving a single oceanic plate and the newly assembled western margin of North America.
加拿大不列颠哥伦比亚省海岸山脉西侧区域连续的早白垩世左旋剪切带的证据
中生代北美科迪勒拉的板块边界条件仍然不明确,但大多数研究支持侏罗纪-白垩纪时期岛间和山间超地体向南移动的大范围运动(约800公里)。这些大规模海岸移动模式的一个隐含特征是,在白垩纪中期缩短和右旋走滑断裂开始之前,可能存在一条或多条大陆规模的左旋走滑断层,这些断层可能沿着北美西部边缘肢解并向南移动了地块碎片。在这项研究中,我们记录了一个岛岛超地体内的左旋弧内剪切带系统,可能适应了大的南移。采用一种新的大n火成岩锆石U-Pb方法,将激光烧蚀-电感耦合等离子体质谱法的测量精度提高了一倍以上(从~1%提高到0.5%),并使我们能够通过定年岩浆横切相来证明岩浆活动与变形之间密切的时空关系。运动前后、同步和运动后岩体的结晶年龄表明,弧内剪切带记录了早白垩世的左旋斜辐合阶段,结束于107 ~ 101 Ma之间。剪切带的停止与以下几个时期同时发生:(1)格拉维纳盆地的崩塌;(2)将岛间和山间超地体连接在一起的单个大弧的发育;(3)整个海岸山脉的东西收缩变形的开始。我们解释这些同时发生的构造-岩浆事件标志着板块运动学的转变,从一个包含独立的地体和其间的洋盆的正弦-斜向系统到一个包含单个大洋板块和新组合的北美西部边缘的强辐合的两板块边缘。
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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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