科迪勒兰板块边界条件变化的岩浆记录——从莫哈韦沙漠的Lu-Hf同位素看

IF 1.7 3区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Geosphere Pub Date : 2023-01-05 DOI:10.1130/ges02438.1
K. Howard, S. Shaw, C. Allen
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引用次数: 1

摘要

莫哈韦地壳省东部的科迪勒兰弧深成岩体带,位于北美西南板块边界内侧,记录了约180–160和75 Ma的主要岩浆脉冲,约100和20 Ma的较小脉冲。这种循环岩浆作用可能反映了不断演化的板块边缘过程。不同年龄深成岩体的锆石Lu-Hf同位素特征和继承锆石可能将岩浆源与演化构造联系起来。与大部分暴露的莫哈韦地壳(1.6–1.8 Ga)年龄相似的来源主导了岩浆。εHf(t)值低至−52的稀有锆石表明,白垩纪熔体来源还包括更古老的地壳成分,如毗湿奴盆地表壳片麻岩中的太古宙碎屑。一些岩石表示地幔岩石圈(中新世)或软流圈(白垩纪中期)的贡献。科迪勒拉样品中同位素模式的时间变化与岩浆通量的周期性脉冲有关。Hf同位素下降表明主要地壳来源是侏罗纪和晚白垩世爆发的特征。晚白垩世的爆发发生在平板俯冲的开始附近,产生了大量的元古代捕虏晶锆石和Hf同位素,主要来源于莫哈韦地壳的非均质深部。同位素上拉是白垩纪中期和中新世岩浆活动的低通量特征。白垩纪中期的脉冲ca.105-95Ma产生了莫哈韦地壳信号,但也产生了同位素上最年轻的岩浆锆石,其εHf值向上几乎为正,并被怀疑是软流圈贡献的信号。这可能指向在科迪勒拉的莫哈韦腹地造成105–95 Ma弧后伸展的平移或板块后退。弧后伸展的可能性引发了人们对同时代内华达山脉高通量弧靠近大陆边缘的构造环境的质疑。
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Magmatic record of changing Cordilleran plate-boundary conditions—Insights from Lu-Hf isotopes in the Mojave Desert
Belts of Cordilleran arc plutons in the eastern part of the Mojave crustal province, inboard from the southwestern North American plate boundary, record major magmatic pulses at ca. 180–160 and 75 Ma and smaller pulses at ca. 100 and 20 Ma. This cyclic magmatism likely reflects evolving plate-margin processes. Zircon Lu-Hf isotopic characteristics and inherited zircons for different-age plutons may relate magma sources to evolving tectonics. Sources similar in age to the bulk of the exposed Mojave crust (1.6–1.8 Ga) dominated the magmas. Rare zircons having εHf(t) values as low as −52 indicate that Cretaceous melt sources also included more ancient crustal components, such as Archean-derived detritus in supracrustal gneisses of the Vishnu basin. Some rocks signal contributions from mantle lithosphere (in the Miocene) or asthenosphere (middle Cretaceous). Temporal shifts in isotopic pattern in this sample of the Cordillera relate to cyclic pulses of magmatic flux. Hf-isotopic pull-downs suggestive of dominantly crustal sources characterize the Jurassic and Late Cretaceous flare-ups. The Late Cretaceous flare-up, occurring near the onset of flat- slab subduction, produced abundant Proterozoic xenocrystic zircon and Hf isotopes implicating derivation largely from heterogeneous deep Mojave crust. Isotopic pull-ups characterize the lower-flux middle Cretaceous and Miocene magmatic episodes. The middle Cretaceous pulse ca. 105–95 Ma produced Mojave crust signals but also the isotopically most juvenile magmatic zircons, ranging upward to barely positive εHf values and suspected to signal an asthenosphere contribution. This may point toward transtension or slab retreat causing 105–95 Ma backarc extension in the Mojave hinterland of the Cordillera. That possibility of backarc extension raises questions about the tectonic environment of the contemporaneous main Sierra Nevada high-flux arc closer to the continental margin.
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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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