Volcanism straddling the Miocene–Pliocene boundary on Patmos and Chiliomodi islands (southeastern Aegean Sea): insights from new 40Ar ∕ 39Ar ages

IF 2.7 Q2 GEOCHEMISTRY & GEOPHYSICS Geochronology Pub Date : 2023-10-11 DOI:10.5194/gchron-5-391-2023
Katharina M. Boehm, Klaudia F. Kuiper, Bora Uzel, Pieter Z. Vroon, Jan R. Wijbrans
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Abstract

Abstract. The island of Patmos, in the eastern Aegean Sea, consists almost entirely of late Miocene to Pliocene volcanic rocks. The magmatism in the Aegean is governed by subduction of the African plate below the Eurasian plate, back-arc extension, slab rollback, slab edge processes and westward extrusion of central Anatolia to the west along the Northern Anatolian Fault into the Aegean domain. The evolution of the Aegean basin is that of a back-arc setting, with a southerly trend in the locus of both convergent tectonics and back-arc stretching, allowing intermittent upwelling of arc, lithospheric and asthenospheric magmas. Here, we present new 40Ar/39Ar age data for Patmos and the nearby small island of Chiliomodi to place this volcanism in a new high-resolution geochronological framework. High-resolution geochronology provides a key to understanding the mechanisms of both the tectonic and magmatic processes that cause the extrusion of magma locally and sheds light on the tectonic evolution of the larger region of the back-arc basin as a whole. The volcanic series on Patmos is alkalic, consistent with a back-arc extensional setting, and ranges from trachybasalt to phonolites, trachytes and rhyolites, with SiO2 ranging from 51.6 wt % to 80.5 wt %, K2O ranging from 2 wt % to 11.8 wt % and extrusion ages ranging from 6.59 ± 0.04 (0.14) Ma to 5.17 ± 0.02 (0.11) Ma. Volcanism on Patmos and adjacent Chiliomodi can be understood as a combination of mantle and crustal tectonic processes including the influence of transform faults and rotational crustal forces that also caused the widening of the southern Aegean basin due to two opposite rotational poles in the east and west and rollback of the subducting slab south of Crete.
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帕特莫斯岛和Chiliomodi岛(爱琴海东南部)中新世-上新世边界上的火山活动:来自新40Ar / 39Ar时代的见解
摘要帕特莫斯岛位于爱琴海东部,几乎完全由中新世晚期到上新世的火山岩组成。爱琴海地区的岩浆活动受非洲板块俯冲到欧亚板块之下、弧后伸展、板块回滚、板块边缘作用以及中部安纳托利亚沿北安纳托利亚断裂向西挤压进入爱琴海地区的控制。爱琴海盆地的演化属于弧后构造背景,在构造辐合和弧后伸展的轨迹上均呈南向,弧、岩石圈和软流圈岩浆间歇上涌。在这里,我们提供了Patmos和附近的Chiliomodi小岛的40Ar/39Ar年龄的新数据,将这种火山活动置于一个新的高分辨率地质年代学框架中。高分辨率地质年代学为理解引起岩浆局部挤压的构造和岩浆过程的机制提供了关键,并揭示了弧后盆地更大区域的整体构造演化。帕特莫斯火山系为碱性火山系,符合弧后伸展背景,由粗玄武岩-空纹岩-粗纹岩-流纹岩组成,SiO2为51.6% ~ 80.5 wt %, K2O为2 ~ 11.8 wt %,挤压年龄为6.59±0.04 (0.14)Ma ~ 5.17±0.02 (0.11)Ma。Patmos和邻近的Chiliomodi上的火山活动可以理解为地幔和地壳构造过程的结合,包括转换断层和地壳旋转力的影响,也导致了南部爱琴海盆地的扩大,这是由于东、西两个相反的旋转极和克里特岛以南俯冲板块的回滚。
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来源期刊
Geochronology
Geochronology Earth and Planetary Sciences-Paleontology
CiteScore
6.60
自引率
0.00%
发文量
35
审稿时长
19 weeks
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