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A recent volcanic eruption beneath the West Antarctic ice sheet

机译:南极西部冰盖下最近的一次火山喷发

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Indirect evidence suggests that volcanic activity occurring beneath the West Antarctic ice sheet influences ice flow and sheet stability(1-3). However, only volcanoes that protrude through the ice sheet(4) and those inferred from geophysical techniques(1,2) have been mapped so far. Here we analyse radar data from the Hudson Mountains, West Antarctica(5), that contain reflections from within the ice that had previously been interpreted erroneously as the ice-sheet bed. We show that the reflections are present within an elliptical area of about 23,000km(2) that contains tephra from an explosive volcanic eruption. The tephra layer is thickest at a subglacial topographic high, which we term the Hudson Mountains Subglacial Volcano. The layer depth dates the eruption at 207 BC +/- 240 years, which matches exceptionally strong but previously unattributed conductivity signals in nearby ice cores. The layer contains 0.019 - 0.31 km(3) of tephra, which implies a volcanic explosive index of 3-4. Production and episodic release of water from the volcano probably affected ice flow at the time of the eruption. Ongoing volcanic heat production may have implications for contemporary ice dynamics in this glacial system.
机译:间接证据表明,在南极西部冰盖下发生的火山活动会影响冰流和冰盖稳定性(1-3)。但是,到目前为止,仅绘制了从冰盖突出的火山(4)和从地球物理技术推断的火山(1,2)。在这里,我们分析了来自南极西部哈德逊山脉的雷达数据(5),该数据包含了冰内部的反射,这些反射以前被错误地解释为冰原。我们表明,反射存在于大约23,000km(2)的椭圆形区域内,其中包含来自爆炸性火山爆发的特非拉。 Tephra层是在冰下地形高处最厚的,我们称之为哈德逊山脉冰下火山。该层的深度可以追溯到公元前207年+/- 240年,与附近冰芯中异常强但以前未归因的电导率信号相匹配。该层包含0.019-0.31 km(3)的特非拉,这意味着火山爆发指数为3-4。在火山喷发时,火山的产生和水的间歇释放可能会影响冰的流动。持续的火山热产生可能会对这种冰川系统中的现代冰动力学产生影响。

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