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Young off-axis volcanism along the ultraslow-spreading Southwest Indian Ridge

机译:沿超慢速蔓延的西南印第安海脊的年轻离轴火山活动

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The growth of oceanic plates at mid-ocean ridges, crustal accretion, occurs by a combination of magmatic and tectonic processes. Magmatic processes along ridges spreading at fast, intermediate and slow rates, continually add volcanic material to a centrally located spreading axis. This creates a narrow band of young volcanic rocks. However, at ridges spreading at ultraslow rates, diminished volcanism allows entire blocks of mantle to spread on the sea floor by tectonic processes. Remote imaging has advanced our observational understanding of crustal accretion, but temporal constraints are required to quantitatively understand ultraslow-spreading ridge construction. Here, we use U-series eruption ages of volcanic rocks collected from the ultraslow-spreading Southwest Indian Ridge. Unexpectedly, we find young volcanic eruption ages that are broadly dispersed throughout the rift valley, indicating that crustal accretion of young volcanic rocks is not confined to a narrow central spreading axis. As areas of young volcanism are observed close to distinct fault surfaces, we propose that the widely dispersed volcanism may result from magma rising along faults. Our results indicate that axial-centric spreading models may not accurately describe crustal accretion at ultraslow-spreading ridges, prompting the re-evaluation of these models.
机译:大洋中脊洋洋板块的生长,地壳增生是岩浆和构造过程的结合。沿洋脊以快速,中速和慢速扩散的岩浆作用过程将火山岩物质不断添加到位于中心的扩散轴上。这样就形成了一条狭窄的年轻火山岩带。但是,在山脊以极慢的速度扩散时,火山作用的减弱使整个地幔块通过构造过程在海底扩散。远程成像已经提高了我们对地壳增生的观测了解,但是需要时间限制才能定量地了解超慢扩散脊构造。在这里,我们使用从超慢速蔓延的西南印第安海岭收集的火山岩的U系列爆发年龄。出乎意料的是,我们发现年轻的火山喷发年龄广泛分布在整个裂谷中,这表明年轻的火山岩的地壳增生并不局限于狭窄的中央扩散轴。由于观察到年轻的火山岩区域靠近不同的断层表面,因此我们认为,广泛散布的火山岩可能是由沿断层的岩浆上升引起的。我们的结果表明,以轴向为中心的扩展模型可能无法准确描述超慢扩展脊处的地壳增生,从而促使对这些模型进行重新评估。

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