Affiliation:
1. Sadovskii Institute of Geosphere Dynamics, Russian Academy of Sciences
2. Pushkov Institute of Terrestrial Magnetism, Ionosphere, and Radio Wave Propagation, Russian Academy of Sciences
Abstract
We present the results of studying the depths to lithospheric magnetic sources under the BalticShield and adjacent territories of the Russian Plate and the Scandinavian Caledonides. The depths have beencalculated from the global model of the lithospheric geomagnetic field EMAG2v3 by the centroid method.The minimum depths of the lower boundary of the lithospheric magnetically active layer (30–35 km) wereobtained under the frame of the Baltic Shield, that is, the Russian Plate, the northern and southern parts ofthe Scandinavian Caledonides, the maximum (45 km), under the Scandinavian Peninsula, in the west ofthe Svecofennian orogen and the Norrbotten craton. The rest of the territory of the Baltic Shield is characterizedby intermediate depths (38–45 km). Based on a comparison of our estimates of the depth of the lowerboundary of lithospheric magnetic sources with the currently available models of the distribution of the Mohodepth under the study area, it can be seen that for most of the Baltic Shield, the magnetically active layer of thelithosphere is located within the crust, with the exception of two areas under the Svecofennian orogen and theeastern part of the Kola Peninsula. This fact supports the hypothesis that the upper mantle has magnetic propertiesin regions where positive long-wave anomalies of the geomagnetic field are observed at satellite altitudes.The obtained results show that the western and eastern parts of the Kola Peninsula can differ not only in thevelocity structure of the crust and upper mantle, which has been previously established by various seismologicalmethods, but also in the magnetic properties of the upper mantle layer located directly under the crust.
Publisher
The Russian Academy of Sciences
Reference60 articles.
1. – Адушкин В.В., Гоев А.Г., Санина И.А., Федоров А.В. Особенности глубинного скоростного строения центральной части Кольского полуострова методом функций приемника // Докл. РАН. Науки о Земле. Т. 501. № 2. С. 180–183. 2021. https://doi.org/10.31857/S268673972112001X
2. – Булина Л.В. Характерные черты распределения нижних кромок для территории СССР / Магнитные аномалии земных глубин. Ред. С.И. Субботин. Киев: Наукова думка, С. 137–151. 1976.
3. – Глазнев Н.В. Комплексные геофизические модели литосферы Фенноскандии. КаэМ: Апатиты, 244 с. 2003.
4. – Гоев А.Г., Санина И.А., Орешин С.И., Резниченко Р.А., Тарасов С.А., Федоров А.В. Скоростное строение литосферы Хибинского и Ловозерского массивов (северо-восточная часть Балтийского щита) методом функции приемника // Физика Земли. № 5. С. 30–40. 2021. https://doi.org/10.31857/S0002333721050069
5. – Козлов Н.Е., Сорохтин Н.О., Глазнев В.Н., Козлова Н.Е., Иванов А.А., Кудряшов Н.М., Мартынов Е.В., Тюремнов В.А., Матюшкин А.В., Осипенко Л.Г. Геология архея Балтийского щита. СПб. Наука, 345 с. 2006.
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