Paleomagnetism of the Sette-Daban Meso-Neoproterozoic magmatic complex of the southeastern margin of the Siberian platform

Pub Date : 2021-01-01 DOI:10.21638/spbu07.2021.401
A. Savelev, Anna A. Pazukhina, A. Pasenko
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Abstract

The interval of ~ 1000 - ~ 900 Ma is one of the key ones in the history of the evolution of the Siberian Platform. At this time, the formation of the neoproterozoic supercontinent Rodinia took place, which undoubtedly found its reflection in the geological annals of Siberia. A reflection of the kinematics of the Siberian platform is its apparent pole wander path (APWP), the development of which will help to clarify the geodynamic in which the platform was at the beginning of the Neoproterozoic. However, not many objects of this age are known within the Siberian Platform, suitable for performing paleomagnetic determinations. The consequence of this is a very limited number of existing reliable poles, obtained either from sedimentary rocks with very imprecise age limits, or from rocks of the Yenisei Ridge and Taimyr with an ambiguous structural position. This paper presents the results of paleomagnetic studies of the Proterozoic igneous rocks of the Sette-Daban complex of the southern Verkhoyansk region, the formation of which took place ~ 1000-970 Ma ago. Detailed thermal magnetic cleaning made it possible to reveal the high-temperature (HT) characteristic component in a significant part of the samples. It has maximum unblocking temperatures of about 580 ° C, lying in the region of the Curie point of magnetite. The average direction of the characteristic component for the sills sampled in the valley of the Yudoma, coincides with the direction obtained earlier on the same bodies. The calculated paleomagnetic pole for the intrusive bodies of the Sette-Daban magmatic complex (Plat = 5.8 °, Plong = 182.9 °, dp / dm = 9.0 ° / 14.4 °) confirms and refines the previously obtained pole for the rocks of this complex, and also indicates that Siberia in the range of ~ 970-1000 Ma was located in the northern hemisphere in tropical latitudes (~ 26 ° N). The analysis of the available geochronological and geochemical data, coupled with new paleomagnetic data, made it possible to clarify the age of the Sette-Daban magmatic event and limit it within ~ 970-1000 Ma.
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西伯利亚地台东南缘塞特—达班中-新元古代岩浆杂岩的古地磁
~ 1000 ~ ~ 900 Ma是西伯利亚地台演化历史上的关键时期之一。在这个时候,新元古代的超大陆Rodinia形成了,这无疑在西伯利亚的地质编年史上得到了反映。西伯利亚地台的视极漂移路径(APWP)是其运动学的一个反映,其发展将有助于澄清新元古代开始时该地台的地球动力学。然而,在西伯利亚地台中,这个年龄的物体并不多,适合进行古地磁测定。其结果是,现有的可靠极点数量非常有限,这些极点要么来自年龄限制非常不精确的沉积岩,要么来自结构位置不明确的叶尼塞岭和泰米尔的岩石。本文介绍了南维尔霍扬斯克地区塞特-达班杂岩元古代火成岩的古地磁研究结果,该杂岩的形成时间约为1000 ~ 970 Ma。详细的热磁清洗使得揭示高温(HT)特征成分在很大一部分样品成为可能。它的最大解封温度约为580°C,位于磁铁矿的居里点区域。在尤多玛山谷取样的岩脉特征分量的平均方向与先前在同一岩脉上得到的方向一致。计算古地磁的北极的岩体Sette-Daban岩浆复杂(平台= 5.8°,Plong = 182.9°,dp / dm = 9.0°/ 14.4°)证实,改进之前获得极这个复杂的岩石,也表明,西伯利亚的~ 970 - 1000 Ma是位于热带的北半球纬度(~ 26°N)。分析可用的地质年代学和地球化学数据,再加上新的古地磁的数据,使得澄清塞特-达班岩浆事件的年龄并将其限制在~ 970-1000 Ma之间成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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