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Seismic detection of an active subglacial magmatic complex in Marie Byrd Land, Antarctica

机译:南极玛丽伯德地区活跃的冰川下岩浆复合体的地震探测

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Numerous volcanoes exist in Marie Byrd Land, a highland region of West Antarctica. High heat flow through the crust in this region may influence the stability of the West Antarctic Ice Sheet. Volcanic activity progressed from north to south in the Executive Committee mountain range between the Miocene and Holocene epochs, but there has been no evidence for recent magmatic activity. Here we use a recently deployed seismic network to show that in 2010 and 2011, two swarms of seismic activity occurred at 25-40 km depth beneath subglacial topographic and magnetic highs, located 55 km south of the youngest subaerial volcano in the Executive Committee Range. We interpret the swarm events as deep long-period earthquakes based on their unusual frequency content. Such earthquakes occur beneath active volcanoes, are caused by deep magmatic activity and, in some cases, precede eruptions. We also use radar profiles to identify a prominent ash layer in the ice overlying the seismic swarm. Located at 1,400 m depth, the ash layer is about 8,000 years old and was probably sourced from the nearby Mount Waesche volcano. Together, these observations provide strong evidence for ongoing magmatic activity and demonstrate that volcanism continues to migrate southwards along the Executive Committee Range. Eruptions at this site are unlikely to penetrate the 1.2 to 2-km-thick overlying ice, but would generate large volumes of melt water that could significantly affect ice stream flow.
机译:西南极高原地区玛丽·伯德(Marie Byrd Land)有许多火山。通过该地区地壳的高热量可能会影响南极西部冰盖的稳定性。在中新世和全新世之间的执行委员会山脉中,火山活动从北向南发展,但是没有证据表明近期发生了岩浆活动。在这里,我们使用最近部署的地震网络显示,在2010年和2011年,在执行委员会范围内最年轻的地下火山以南55公里处的冰川之下的地形和磁高以下25-40 km的深度发生了两次地震活动。根据异常事件的频率含量,我们将群事件解释为深长期地震。这种地震发生在活跃的火山下面,是由深部岩浆活动引起的,在某些情况下是在喷发之前发生的。我们还使用雷达廓线来识别覆盖在地震群上方的冰中显着的灰烬层。灰烬层位于1,400 m深度,大约有8,000年的历史,可能来自附近的Waesche火山。这些观察结果共同为正在进行的岩浆活动提供了有力的证据,并表明火山活动继续沿着执行委员会范围向南迁移。该地点的喷发不太可能穿透1.2至2公里厚的覆冰,但会产生大量融水,这可能会严重影响冰流。

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