Revised age and regional correlations of Cenozoic strata on Bat Mountain, Death Valley region, California, USA, from zircon U-Pb geochronology of sandstones and ash-fall tuffs

IF 1.7 3区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Geosphere Pub Date : 2022-12-22 DOI:10.1130/ges02543.1
T. Schwartz, A. K. Souders, Jens-Erik Lundstern, A. Gilmer, Ren A. Thompson
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引用次数: 1

Abstract

Basin analysis and tectonic reconstructions of the Cenozoic history of the Death Valley region, California, USA, are hindered by a lack of volcanic (tuff) age control in many stratigraphic successions exposed in the Grapevine and Funeral Mountains of California, USA. Although maximum depositional ages (MDAs) interpreted from detrital zircon U-Pb data may be a promising alternative to volcanic ages, arguments remain regarding the calculation of MDAs including, but not limited to, the number of “young” grains to consider (i.e., the spectrum of dates used to calculate the MDA); which grains, if any, should be ignored; which approaches yield results that are statistically rigorous; and ultimately, which approaches result in ages that are geologically reasonable. We compare commonly used metrics of detrital zircon MDA for five sandstone samples from the Cenozoic strata exposed on Bat Mountain in the southern Funeral Mountains of California—i.e., the youngest single grain (YSG), the weighted mean of the youngest grain cluster of two or more grains at 1σ uncertainty (YC1σ(2+)) and of three or more grains at 2σ uncertainty (YC2σ(3+)), the youngest graphical peak (YPP), and the maximum likelihood age (MLA). Every sandstone sample yielded abundant Cenozoic zircon U-Pb dates that formed unimodal, near-normal age distributions that were clearly distinguishable from the next-oldest grains in each sample and showed an apparent up-section decrease in peak age. Benchmarked against published K/Ar and 40Ar/39Ar ages and five new zircon U-Pb ages of ash-fall tuffs, our analysis parallels prior studies and demonstrates that many MDA metrics—YSG, YC1σ(2+), YC2σ(3+), and YPP—drift toward unreasonably young or old values. In contrast, the maximum likelihood estimation approach and the resulting MLA metric consistently produce geologically appropriate estimates of MDA without arbitrary omission of any young (or old) zircon dates. Using the MLAs of sandstones and zircon U-Pb ages of interbedded ash-fall tuffs, we develop a new age model for the Oligocene–Miocene Amargosa Valley Formation (deposited ca. 28.5–18.5 Ma) and the Miocene Bat Mountain Formation (deposited ca. 15.5–13.5 Ma) and revise correlations to Cenozoic strata across the eastern Death Valley region.
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根据砂岩和火山灰凝灰岩的锆石U-Pb地质年代,修正了美国加利福尼亚州死亡谷地区蝙蝠山新生代地层的年龄和区域相关性
美国加利福尼亚州死亡谷地区新生代历史的盆地分析和构造重建受到美国加利福尼亚州葡萄藤山和葬礼山许多地层序列缺乏火山(凝灰岩)年龄控制的阻碍。尽管根据碎屑锆石U-Pb数据解释的最大沉积年龄(MDA)可能是火山年龄的一个很有前途的替代方案,但关于MDA的计算仍存在争议,包括但不限于需要考虑的“年轻”颗粒的数量(即用于计算MDA的日期谱);哪些颗粒(如果有的话)应该被忽略;哪些方法产生统计上严格的结果;最终,哪种方法得出的年龄在地质学上是合理的。我们比较了来自加利福尼亚州南部葬礼山脉蝙蝠山新生代地层的五个砂岩样品的碎屑锆石MDA的常用指标,即最年轻的单颗粒(YSG),即在1σ不确定度(YC1σ(2+))下两个或多个颗粒的最年轻颗粒簇的加权平均值,最年轻图形峰值(YPP)和最大似然年龄(MLA)。每个砂岩样品都产生了丰富的新生代锆石U-Pb日期,这些日期形成了单峰的、接近正常的年龄分布,与每个样品中第二古老的颗粒明显不同,并在峰值年龄上显示出明显的向上剖面下降。根据已发表的灰岩凝灰岩的K/Ar和40Ar/39Ar年龄以及五个新的锆石U-Pb年龄,我们的分析与先前的研究相似,并表明许多MDA指标——YSG、YC1σ(2+)、YC2σ(3+)和YPP——朝着不合理的年轻或旧值漂移。相反,最大似然估计方法和由此产生的MLA度量一致地产生了地质上适当的MDA估计,而没有任意遗漏任何年轻(或年老)锆石日期。利用砂岩的MLA和互层火山灰凝灰岩的锆石U-Pb年龄,我们为渐新世-中新世Amargosa Valley组(沉积约28.5–18.5 Ma)和中新世Bat Mountain组(沉积期约15.5–13.5 Ma)开发了一个新的年龄模型,并修正了与东部死亡谷地区新生代地层的相关性。
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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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