Spatial variations in focused exhumation along a continental-scale strike-slip fault: The Denali fault of the eastern Alaska Range

IF 1.7 3区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Geosphere Pub Date : 2011-04-01 DOI:10.1130/GES00589.1
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引用次数: 100

Abstract

40 Ar/ 39 Ar, apatite fission-track, and apatite (U-Th)/He thermochronological techniques were used to determine the Neogene exhumation history of the topographically asymmetric eastern Alaska Range. Exhumation cooling ages range from ∼33 Ma to ∼18 Ma for 40 Ar/ 39 Ar biotite, ∼18 Ma to ∼6 Ma for K-feldspar minimum closure ages, and ∼15 Ma to ∼1 Ma for apatite fission-track ages, and apatite (U-Th)/He cooling ages range from ∼4 Ma to ∼1 Ma. There has been at least ∼11 km of exhumation adjacent to the north side of Denali fault during the Neogene inferred from biotite 40 Ar/ 39 Ar thermochronology. Variations in exhumation history along and across the strike of the fault are influenced by both far-field effects and local structural irregularities. We infer deformation and rapid exhumation have been occurring in the eastern Alaska Range since at least ∼22 Ma most likely related to the continued collision of the Yakutat microplate with the North American plate. The Nenana Mountain region is the late Pleistocene to Holocene (∼past 1 Ma) primary locus of tectonically driven exhumation in the eastern Alaska Range, possibly related to variations in fault geometry. During the Pliocene, a marked increase in climatic instability and related global cooling is temporally correlated with an increase in exhumation rates in the eastern Alaska Range north of the Denali fault system.
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沿大陆尺度走滑断层集中挖掘的空间变化:阿拉斯加山脉东部的德纳里断层
利用40 Ar/ 39 Ar、磷灰石裂变径迹和磷灰石(U-Th)/He热年代学技术确定了地形不对称的阿拉斯加山脉东部新近纪的发掘历史。40 Ar/ 39 Ar黑云母的掘出冷却年龄为~ 33 Ma至~ 18 Ma, k -长石最小闭合年龄为~ 18 Ma至~ 6 Ma,磷灰石裂变径迹年龄为~ 15 Ma至~ 1 Ma,磷灰石(U-Th)/He冷却年龄为~ 4 Ma至~ 1 Ma。根据黑云母40 Ar/ 39 Ar热年代学推断,新近纪在Denali断裂北侧附近至少有~ 11 km的发掘。沿断层走向和沿断层走向的挖掘历史的变化受远场效应和局部构造不规则性的影响。我们推断,至少自22 Ma以来,阿拉斯加山脉东部一直在发生变形和快速挖掘,这很可能与雅库特微板块与北美板块的持续碰撞有关。Nenana山地区是阿拉斯加山脉东部晚更新世至全新世(~过去1 Ma)构造驱动发掘的主要地点,可能与断层几何形状的变化有关。在上新世期间,气候不稳定的显著增加和相关的全球变冷在时间上与德纳里断裂系统以北的阿拉斯加山脉东部的挖掘率增加有关。
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Alternating asymmetric topography of the Alaska range along the strike‐slip Denali fault: Strain partitioning and lithospheric control across a terrane suture zone
IF 4.2 1区 地球科学TectonicsPub Date : 2014-08-01 DOI: 10.1002/2013TC003432
P. Fitzgerald, S. Roeske, J. Benowitz, Steven Riccio, S. Perry, P. Armstrong
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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