Significant variations in the structure and composition of the crust beneath northwestern India: Imprints of magmatism

IF 2.4 3区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS
B. Gowthami, D.S. Saju, G. Mohan
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引用次数: 0

Abstract

Northwestern India was affected by the Neoproterozoic Malani and Erinpura magmatism, Cretaceous rifting, and magmatism associated with the Deccan precursors. Receiver function analysis was done using 1704 RFs from 18 stations to image and decipher the imprints of the magmatic events and comprehend the crustal modifications in terms of variations in structure and composition. The H-κ grid search and neighbourhood inversion techniques are used to retrieve the crustal structure and Vp/Vs ratios (κ). The study reveals significant variations in the crustal thickness (H = 34 km to 43 km), composition (κ=1.74 to 1.92) and shear wave velocity structure across northwestern India. The terrains encompassing the Erinpura granite and the Malani igneous suite in the vicinity of the Barmer rift are characterized by a thick (H ≥ 41 km) crust with felsic to intermediate composition (κ ≤ 1.81). The crust beneath the southern part of the Marwar basin is ≈ 38–40 km thick with mafic composition (κ> 1.81). The region around the Barmer rift has a thin crust (H = 34–36 km) with intermediate to mafic composition. The region hosting the Early Cretaceous to Paleogene alkaline complexes exhibits a high Vp/Vs ratio (κ= 1.91) that may be associated with mafic cumulates emplaced by magmatic events that overprint the signatures of the Malani event. The crust is heterogeneous with low/high velocity intracrustal layers that reflect the fractionation of magma at different depths. The mafic residue, together with magmatic intrusions, results in a mafic lowermost crust with high shear velocities of 3.9–4.0 km/s beneath most stations. Overall, northwestern India is characterized by a thick crust with intermediate crustal composition and intracrustal layering resulting from large scale magmatic events linked to the Neoproterozoic reorganization of plates and younger magmatic events.

Abstract Image

印度西北部地壳结构和成分的显著变化:岩浆活动的印迹
印度西北部受到了新新生代马拉尼和埃林普拉岩浆活动、白垩纪断裂以及与德干纪前体有关的岩浆活动的影响。利用来自 18 个站点的 1704 个射频信号进行了接收函数分析,以成像和破译岩浆事件的印记,并从结构和成分变化的角度理解地壳的变化。利用 H-κ 网格搜索和邻域反演技术检索地壳结构和 Vp/Vs 比值 (κ)。研究显示,整个印度西北部的地壳厚度(H = 34 至 43 千米)、成分(κ=1.74 至 1.92)和剪切波速度结构存在显著差异。巴莫裂谷附近的埃林普拉花岗岩和马拉尼火成岩岩套地形的特点是地壳厚(H ≥ 41 千米),成分为长英岩至中等成分(κ ≤ 1.81)。马尔瓦盆地南部下方的地壳厚度≈38-40千米,岩浆岩成分(κ> 1.81)。巴尔默断裂周围地区的地壳较薄(H = 34-36 千米),成分为中黑云母。早白垩世至古近纪碱性复合体所在区域的Vp/Vs比值较高(κ= 1.91),可能与岩浆事件所堆积的黑云母积块有关,这些积块覆盖了马拉尼事件的特征。地壳是异质的,具有低/高流速的地壳内层,反映了岩浆在不同深度的分馏。岩浆残余物与岩浆侵入体共同形成了最下层的岩浆地壳,在大多数站点下方的剪切速度高达 3.9-4.0 千米/秒。总体而言,印度西北部地壳较厚,具有中等地壳成分和地壳内分层,这是与新近纪板块重组有关的大规模岩浆活动和较年轻的岩浆活动造成的。
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来源期刊
Physics of the Earth and Planetary Interiors
Physics of the Earth and Planetary Interiors 地学天文-地球化学与地球物理
CiteScore
5.00
自引率
4.30%
发文量
78
审稿时长
18.5 weeks
期刊介绍: Launched in 1968 to fill the need for an international journal in the field of planetary physics, geodesy and geophysics, Physics of the Earth and Planetary Interiors has now grown to become important reading matter for all geophysicists. It is the only journal to be entirely devoted to the physical and chemical processes of planetary interiors. Original research papers, review articles, short communications and book reviews are all published on a regular basis; and from time to time special issues of the journal are devoted to the publication of the proceedings of symposia and congresses which the editors feel will be of particular interest to the reader.
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