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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Episodic growth and homogenization of plutonic roots in arc volcanoes from combined U-Th and (U-Th)/He zircon dating
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Episodic growth and homogenization of plutonic roots in arc volcanoes from combined U-Th and (U-Th)/He zircon dating

机译:U-Th和(U-Th)/ He锆石合并测年的弧形火山中的古生根的间歇性生长和均质化

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Tracing the fate of unerupted magma is challenging because plutonic roots of young volcanoes are largely inaccessible. Here we develop the use of zircon age spectra to determine crystal provenance and source rocks for volcanic products, in analogy to detrital crystals in sediments. U-Th zircon crystallization ages for the Soufrière Volcanic Complex, Saint Lucia (Lesser Antilles) frequently predate their eruption as determined from combined U-Th and (U-Th)/He zircon dating. The oldest dated eruptions are 273 ± 15 ka and 264 ± 8 ka (1 σ uncertainty) for Morne Bonin dacite and Bellevue pumice deposit, respectively. The most recent eruptions formed morphologically pristine domes in the center of the Qualibou depression (Belfond: 13.6 ± 0.4 ka; Terre Blanche: 15.3 ± 0.4 ka). U-Th (U-Pb) zircon crystallization ages determined for crystal rims and interiors range between near-eruption ages to ~600. ka. Older xenocrysts are absent. Zircon crystallization age distributions are complex, yet systematic: crystal rim ages in the most recently erupted volcanic rocks match those of co-erupted plutonic inclusions, whereas crystal interiors are equivalent to the cumulative distribution of zircon ages from older eruptions. This is evidence that silicic lava domes and pyroclastic flows share a common source that is located underneath the Qualibou depression, where the intrusive roots of this long-lived arc volcanic system became homogenized through thermal and mechanical reprocessing of individual batches of unerupted magma from earlier volcanic episodes within timescales of < 100. ka.
机译:追踪未破裂的岩浆的命运具有挑战性,因为年轻火山的深成岩根在很大程度上难以接近。在这里,我们利用锆石年龄谱来确定火山产品的晶体起源和烃源岩,类似于沉积物中的碎屑晶体。根据联合的U-Th和(U-Th)/ He锆石年代确定的圣卢西亚Soufrière火山复合体的U-Th锆石结晶年龄通常早于安第列斯群岛(Lesser Antilles)。 Morne Bonin闪锌矿和Bellevue浮石沉积的最古老的喷发分别为273±15 ka和264±8 ka(不确定性1σ)。最近的喷发在Qualibou凹陷的中心形成了形态原始的穹顶(贝芬(Belfond):13.6±0.4 ka;特雷·布兰奇:Terre Blanche:15.3±0.4 ka)。确定的晶体边缘和内部的U-Th(U-Pb)锆石结晶年龄介于近爆发年龄至〜600之间。 K a。不存在较旧的异种晶。锆石的结晶年龄分布是复杂而又系统的:最近喷出的火山岩中的晶体边缘年龄与共生的火山岩夹杂物的晶体边缘年龄相匹配,而晶体内部等效于较早喷发的锆石年龄的累积分布。这证明硅质熔岩穹顶和火山碎屑流共享位于Qualibou凹陷下方的共同来源,该长寿弧形火山系统的侵入根通过对早期火山爆发的各个批次的岩浆进行热和机械后处理而变得均质化了<100时标内的情节。

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