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Widespread active detachment faulting and core complex formation near 13 degrees N on the Mid-Atlantic Ridge

机译:大西洋中脊上北纬13度附近的广泛的主动脱离断层和岩心复合体形成

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Oceanic core complexes are massifs in which lower-crustal and upper-mantle rocks are exposed at the sea floor(1-3). They form at mid-ocean ridges through slip on detachment faults rooted below the spreading axis(2-6). To date, most studies of core complexes have been based on isolated inactive massifs that have spread away from ridge axes. Here we present a survey of the Mid-Atlantic Ridge near 13 degrees N containing a segment in which a number of linked detachment faults extend for 75 km along one flank of the spreading axis. The detachment faults are apparently all currently active and at various stages of development. A field of extinct core complexes extends away from the axis for at least 100 km. Our observations reveal the topographic characteristics of actively forming core complexes and their evolution from initiation within the axial valley floor to maturity and eventual inactivity. Within the surrounding region there is a strong correlation between detachment fault morphology at the ridge axis and high rates of hydroacoustically recorded earthquake seismicity. Preliminary examination of seismicity and seafloor morphology farther north along the Mid-Atlantic Ridge suggests that active detachment faulting is occurring in many segments and that detachment faulting is more important in the generation of ocean crust at this slow-spreading ridge than previously suspected.
机译:大洋岩心复合体是地壳,下地壳和上地幔岩石暴露于海床(1-3)。它们通过根系在扩展轴下方的分离断层上的滑动而在大洋中脊形成(2-6)。迄今为止,大多数对核心配合物的研究都是基于孤立的非活性地块,这些地块已经远离山脊轴线展开。在这里,我们提出了对北大西洋中脊在北纬13度附近的一项勘测,其中包含一段,其中许多相连的分离断层沿着扩张轴的一个侧面延伸了75公里。分离断层显然目前都处于活动状态,并且处于发展的各个阶段。灭绝的核心复合体场远离轴心延伸至少100 km。我们的观察揭示了活跃形成的核心复合物的地形特征,以及它们从轴向谷底开始到成熟和最终失活的演变。在周围区域内,脊轴上的分离断层形态与水声记录的高地震地震活动率之间有很强的相关性。沿着中大西洋海脊以北更远的地震活动和海底形态的初步检查表明,活跃的分离断层正在许多段中发生,并且在这个缓慢扩展的山脊中,在形成地壳的过程中,分离断层比以前的怀疑更为重要。

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