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The 40Ar/39Ar and U/Pb dating of young rhyolites in the Kos-Nisyros volcanic complex, Eastern Aegean Arc, Greece: Age discordance due to excess 40Ar in biotite

机译:希腊爱琴海东部科斯-尼西罗斯火山群中年轻流纹岩的 40 Ar / 39 Ar和U / Pb年代:由于过量的黑云母中有40 Ar

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摘要

[1] High‐precision dating of Quaternary silicic magmas in the active Kos‐Nisyros volcanic center (Aegean Arc, Greece) by both 40Ar/39Ar on biotite and U/Pb on zircon reveals a complex geochronological story. U/Pb ID‐TIMS multi and single‐grain zircon analyses from 3 different units (Agios Mammas and Zini domes, Kefalos Serie pyroclasts) range in age from 0.3 to 0.5 to 10–20 Ma. The youngest dates provide the maximum eruption age, while the oldest zircons indicate inheritance from local continental crust (Miocene and older). Step‐heating 40Ar/39Ar experiments on 1–3 crystals of fresh biotite yielded highly disturbed Ar‐release patterns with plateau ages typically older than most U/Pb ages. These old plateau ages are probably not a consequence of inheritance from xenocrystic biotites because Ar diffuses extremely fast at magmatic temperatures and ratios are reset within a few days. On the basis of (1) elevated and/or imprecise 40Ar/36Ar ratios, (2) shapes of the Ar release spectra, and (3) a high mantle 3He flux in the Kos‐Nisyros area, we suggest that biotite crystals retained some mantle 40Ar that led to the observed, anomalously old ages. In contrast, sanidine crystals from the only sanidine‐bearing unit in the Kos‐Nisyros volcanic center (the caldera‐forming Kos Plateau Tuff) do not appear to store any excess 40Ar relative to atmospheric composition. The eastern edge of the Aegean Arc is tectonically complex, undergoing rapid extension and located close to a major structural boundary. In such regions, which are characterized by high fluxes of mantle volatiles, 40Ar/39Ar geochronology on biotite can lead to erroneous results due to the presence of excess 40Ar and should be checked either against 40Ar/39Ar sanidine or U/Pb zircon ages.
机译:[1]在活跃的科斯·尼西罗斯火山中心(希腊爱琴海弧)对第四纪硅质岩浆的高精度测年,黑云母上的40Ar / 39Ar和锆石上的U / Pb揭示了一个复杂的年代学故事。 3种不同单位(Agios Mammas和Zini穹顶,Kefalos Serie火山碎裂体)的U / Pb ID‐TIMS多粒和单粒锆石分析的年龄范围为0.3至0.5至10-20 Ma。最年轻的枣提供最大的喷发年龄,而最古老的锆石则表明是从当地大陆壳(中新世及更老)继承的。在新鲜黑云母的1-3个晶体上进行逐步加热的40Ar / 39Ar实验,产生了高度干扰的Ar释放模式,其平台年龄通常比大多数U / Pb年龄大。这些古老的高原年龄可能不是异种黑云母继承的结果,因为Ar在岩浆温度下扩散极快,并且比例在几天之内重新设置。基于(1)40Ar / 36Ar比值升高和/或不精确,(2)Ar释放光谱的形状以及(3)Kos-Nisyros地区的高地幔3He通量,我们建议黑云母晶体保留了一些导致观测到的异常年龄的40Ar幔。相比之下,来自科斯尼西罗斯火山中心(火山口形成的科斯高原凝灰岩)中唯一带有山梨糖苷的单元的山梨糖晶体相对于大气成分而言似乎没有储存任何过量的40 Ar。爱琴海弧的东缘在构造上很复杂,正在迅速扩展并靠近主要的结构边界。在以地幔挥发物的高通量为特征的此类地区,由于存在过量的40Ar,黑云母上的40Ar / 39Ar地质年代学可能导致错误的结果,应针对40Ar / 39Ar尿烷或U / Pb锆石年龄进行检查。

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