首页> 外文期刊>Journal of Volcanology and Geothermal Research2012V243-244NOCT,15 >Subduction control on the curie isotherm around the Pacific-North America plate boundary in northwestern Mexico (Gulf of California). Preliminary results
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Subduction control on the curie isotherm around the Pacific-North America plate boundary in northwestern Mexico (Gulf of California). Preliminary results

机译:墨西哥西北地区北美洲钢板边界周围居民等温线的俯卧控度。初步结果

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Spectral analysis of NAMAG magnetic data enabled us to estimate depths to the Curie isotherm along the Pacific-North America plate boundary. The estimated depths for the Gulf of California, and southern Baja California peninsula, correlate quite well with the depths to the Moho available from previous studies based on receiver function, and seismic refraction. In northernmost Baja California, and southwestern USA no correlation is observed between depths to the Curie isotherm and depths to the mantle obtained from receiver function analysis. Depths to the Curie isotherm are shallower. Along the coastal plains of Sonora and Sinaloa, differences between receiver function based Mantle depths and Curie depths are equally large. However, there is more consistency with depths established by seismic refraction studies. Four zones with shallow Curie isotherm are identified in southern Gulf of California (GS1, GS2, GS3, and GS4). GS1 is located at the Gulf of California mouth. The Alarcon rise is located between GS1 and GS2. Pescaderos Basin is located northwest of GS2. GS3 stretches from the Carmen Basin to the Farallon Basin. GS4 extends from Tiburon Island up to northern Guaymas Basin. Northernmost shallow Curie depth zone (GN1) comprises Upper and Lower Delfin Basins, as well as the Consag and Wagner Basins. A northern prolongation also covers Pinacate Volcanic center. The southern shallow Curie isotherm zones are associated with lithospheric-asthenospheric material upwelling zones. GN1 also includes a convective component related to the younger magmatism of the Pinacate Volcanic Field.Deeper Curie depths are found at southern Baja California peninsula, interpreted as associated with thicker continental or stretched crust. It is possible that the crust is underlain or underplated by magnetic oceanic crust as suggested by satellite magnetic anomalies centered at the Magdalena shelf. A contrasting pattern features northern Baja California: deep Curie zones to the west contrasting with relative shallower Curie isotherm areas to the east. The prolongation towards the peninsula of the extinct Shirley transform fracture zone roughly separates the two domains observed along the peninsula, and suggests that the Curie isotherm along the peninsula is controlled by differences subduction of the Guadalupe and Magdalena microplates. Major differences pointed out between northern and southern Gulf of California might indicate that subduction also played a key role at the beginning of the opening of the Gulf of California, however, currently, the Curie pattern is controlled by the rifting processes (shallow Curie zones correlating quite well with the rift basins and the lithosphere-asthenosphere up welling material). (C) 2019 The Authors. Published by Elsevier B.V.
机译:Namag磁数据的光谱分析使我们能够沿太平洋北美板边界估算到居里等温线的深度。加利福尼亚州海湾和南方加州加州半岛的估计深度与基于接收器功能的先前研究和地震折射的先前研究的深度相比,与Moho的深度相比相当好。在最北部的Baja加利福尼亚州和美国西南部没有任何相关性在深度到居里等温线之间,深度到从接收器功能分析获得的地幔。到居里等温线的深度较浅。沿着沿海平原的Sonora和Sinaloa,基于接收器功能的地幔深度和居里深度之间的差异同样大。然而,与地震折射研究建立的深度更加一致。在加利福尼亚州的南部(GS1,GS2,GS3和GS4)中鉴定了四个带浅居里等温线的区域。 GS1位于加利福尼亚州的海湾。 Alarcon上升位于GS1和GS2之间。 Pescaderos盆地位于GS2的西北部。 GS3从卡门盆地延伸到法拉隆盆地。 GS4从Tiburon Island延伸到Guaymas盆地北部。最北端的浅居里深度区(GN1)包括上下达尔菲林盆地,以及派生和瓦格纳盆地。北方延长也覆盖了蚕巴中心。南部浅居民等温区与岩石树脂血压覆盖区相关。 GN1还包括与矮小的Valcanic Field的年轻岩浆学相关的对流组件。在Baja California半岛南部的Deeper Curie Depths发现,用厚厚的大陆或拉伸外壳被解释为相关的。如卫星磁性异常所建议的磁性异常所提出的,地壳可能是下层的或面向磁性异常所示。对比模式特点是北方Baja加利福尼亚州:西部的深度居里区与较浅较浅的居住地区到东方。朝向灭绝的Shirley变换骨折区的半岛的延长大致分离了半岛观察到的两个域,并表明沿着半岛的居里等温线被瓜达卢佩和马格达莱纳微孔板的差异控制。加州北部和南部南部之间指出的重大差异可能表明,延长在加利福尼亚州海湾开业时也发挥了关键作用,然而,目前,居里模式由脱水过程控制(浅居里区关联与裂谷盆地和岩石圈的近际圈的良好兴奋材料相当吻合。 (c)2019年作者。由elsevier b.v出版。

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