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Shear velocity structure of the Mariana mantle wedge from Rayleigh wave phase velocities

机译:从瑞利波相速度看马里亚纳地幔楔的剪切速度结构

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We examine the seismic structure of the Mariana mantle wedge using data from a combined deployment of ocean bottom seismographs and land stations in 2003-2004. We measure Rayleigh wave phase velocities and invert these results for the shear velocity structure and azimuthal anisotropy in the region. In the back-arc region low phase velocities indicate shear velocities as low as 3.9 f 0.1 km/s at depths of about 60 km. Locations of the lowest seismic velocities at 18.0°N-18.5°N, 16.0°N-16.5°N, and 14.0°N-14.5°N correspond to the locations of gravity lows and probably indicate the presence of temperature and melt production maxima compared to elsewhere along the spreading center. The shape of the low velocity anomaly also indicates that there is a degree of asymmetry to the thermal structure across the spreading center. The fore arc exhibits low shear velocities (V_s,~ 3.6 km/s) at depths shallower than 40 km. These low uppermost mantle velocities are likely due to serpentinization of the fore arc. Azimuthal anisotropy results suggest an average peak-to-peak anisotropy of about 1%--2% with a fast direction of NNE. Fore-arc anisotropy shows arc-parallel fast directions at shallow depth in agreement with previous shear wave splitting observations and deeper arc-perpendicular directions influenced by the slab. Back-arc anisotropy is largely arc perpendicular, consistent with splitting observations west of the spreading center.
机译:我们使用2003-2004年海底地震仪和陆地站的联合部署数据,研究了Mariana地幔楔的地震结构。我们测量瑞利波的相速度并将这些结果反演为该区域的剪切速度结构和方位各向异性。在弧后区域,低相速度表示在约60 km的深度处的剪切速度低至3.9 f 0.1 km / s。在18.0°N-18.5°N,16.0°N-16.5°N和14.0°N-14.5°N处最低地震速度的位置对应于重力低点的位置,并且可能表明存在温度和熔体产生最大值到扩散中心的其他地方。低速异常的形状还表明,整个扩散中心的热力结构存在一定程度的不对称性。前弧在小于40 km的深度处表现出较低的剪切速度(V_s,〜3.6 km / s)。这些最低的上地幔速度可能是由于前弧的蛇形化。方位各向异性结果表明,在NNE快速方向上,平均峰峰各向异性约为1%-2%。前弧各向异性在浅层深度显示出与弧平行的快速方向,这与先前的剪切波分裂观测结果以及受平板影响的较深弧垂直方向一致。弧后各向异性主要是弧垂直的,这与扩展中心以西的分裂观测一致。

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