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SKS splitting in Southern Italy: Anisotropy variations in a fragmented subduction zone

机译:意大利南部的SKS分裂:俯冲带零散的各向异性变化

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In this paper we present a collection of good quality shear wave splitting measurements in Southern Italy. In addition to a large amount of previous splitting measurements, we present new data from 15 teleseisms recorded from 2003 to 2006 at the 40 stations of the CAT/SCAN temporary network. These new measurements provide additional constraints on the anisotropic behaviour of the study region and better define the fast directions in the southern part of the Apulian Platform. For our analysis we have selected well-recorded SKS phases and we have used the method of Silver and Chan to obtain the splitting parameters: the azimuth of the fast polarized shear wave (phi) and delay time (delta t). Shear wave splitting results reveal the presence of a strong seismic anisotropy in the subduction system below the region. Three different geological and geodynamic regions are characterized by different anisotropic parameters. The Calabrian Arc domain has fast directions oriented NNE-SSW and the Southern Apennines domain has fast directions oriented NNW-SSE. This rotation of fast axes, following the arcuate shape of the slab, is marked by a lack of resolved measurements which occurs at the transition zone between those two domains. The third domain is identified in the Apulian Platform: here fast directions are oriented almost N-S in the northern part and NNE-SSW to ENE-WSW in the southern one. The large number of splitting parameters evaluated for events coming from different back-azimuth allows us to hypothesize the presence of a depth-dependent anisotropic structure which should be more complicated than a simple 2 layer model below the Southern Apennines and the Calabrian Arc domains and to constrain at 50 km depth the upper limit of the anisotropic layer, at least at the edge of Southern Apennines and Apulian Platform. We interpret the variability in fast directions as related to the fragmented subduction system in the mantle of this region. The trench-parallel p observed in Calabrian Arc and in Southern Apennines has its main source in the asthenospheric flow below the slab likely due to the pressure induced by the retrograde motion of the slab itself. The pattern of phi in the Apulian Platform does not appear to be the direct result of the rollback motion of the slab, whose influence is limited to about 100 km from the slab. The anisotropy in the Apulian Platform may be related to an asthenospheric flow deflected by the complicated structure of the Adriatic microplate or may also be explained as frozen-in lithospheric anisotropy.
机译:在本文中,我们介绍了意大利南部优质剪切波分裂测量的集合。除了以前的大量分割测量之外,我们还提供了2003年至2006年在CAT / SCAN临时网络的40个站点​​上记录的15个远震的新数据。这些新的测量结果为研究区域的各向异性行为提供了额外的限制,并更好地定义了阿普利亚平台南部的快速方向。为了进行分析,我们选择了记录良好的SKS相,并使用Silver和Chan的方法获得分裂参数:快速极化剪切波的方位角(phi)和延迟时间(delta t)。剪切波分裂结果表明,该区域以下的俯冲系统中存在强烈的地震各向异性。三个不同的地质和地球动力学区域具有不同的各向异性参数。卡拉布里亚弧域具有面向NNE-SSW的快速方向,而南部亚平宁山脉域具有面向NNW-SSE的快速方向。快速轴的这种旋转遵循板的弓形形状,其特征在于缺少解析的测量,该测量发生在这两个区域之间的过渡区域。第三个领域在Apulian平台中确定:这里的快速方向几乎是北部的N-S,南部是NNE-SSW到ENE-WSW。针对来自不同后方位角的事件评估的大量分裂参数使我们能够假设存在与深度有关的各向异性结构,该结构比南亚平宁山脉和卡拉布里亚弧域下方的简单2层模型要复杂得多,并且至少在南亚平宁山脉和阿普利安台地边缘,在50 km深度限制各向异性层的上限。我们将快速方向的变异性解释为与该地区地幔中的零散俯冲系统有关。在卡拉布里亚弧线和亚平宁山脉南部观察到的平行于沟槽的p可能是由于平板自身逆行运动引起的压力而在平板下方的软流圈流动中产生的。普普拉斯平台中phi的模式似乎不是板坯回滚运动的直接结果,板坯的回滚运动仅限于距板坯约100 km。 Apulian平台中的各向异性可能与亚得里亚海微板的复杂结构偏转的软流圈流量有关,也可能解释为冻结在岩石圈中的各向异性。

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