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Antarctic Magnetic Anomalies and Their Gradients Differentially Reduced to the Geomagnetic Pole for Enhanced Crustal Analysis

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Title
Antarctic Magnetic Anomalies and Their Gradients Differentially Reduced to the Geomagnetic Pole for Enhanced Crustal Analysis
Other Titles
지각 구조 해석 강화를 위한 지자기극 환산 남극 자기 이상 및 자기 경사 분석
Authors
Kim H. R.
Golynsky A. V.
Golynsky D. A.
Leftwich T. E.
Von Frese R. R. B.
Hong, Jong Kuk
Lee M.
Keywords
Antarctic total field magnetic anomalies from all available surveys can be integrated for crustal study by point magnetic dipole modelingFor sources lacking remanent magnetizationthe model differentially reduces the total field anomalies and their gradients to radial poleThis analysis yields new insights on East Antarctica's geothermal variationscrustal cratonssutures and other tectonic attributes
Issue Date
2025
Citation
Kim H. R., et al. 2025. "Antarctic Magnetic Anomalies and Their Gradients Differentially Reduced to the Geomagnetic Pole for Enhanced Crustal Analysis". JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 130(5): 0-0.
Abstract
To facilitate geological studies of the Antarctic region south of 60 degrees S, equivalent point magnetic dipole inversion was used to produce the comprehensive airborne-to-satellite altitude ADMAP-2s magnetic anomaly model. These spherical coordinate anomaly predictions jointly match the crustal magnetic anomalies gridded at 250 km above the Earth's mean geocentric radius (mgr) from the magnetometer observations of the Swarm satellite mission and at the mgr from the Antarctic Digital Magnetic Anomaly Project's (ADMAP) second-generation magnetic anomaly compilation (ADMAP-2) of over 3.5 million line-km of aeromagnetic and shipborne survey data. The present study investigates the utility of point dipole modeling for differentially reducing the magnetic anomalies to the pole and estimating their first and second order radial (i.e., locally vertical) derivative anomalies. Where sufficiently accurate, these radially polarized magnetic anomalies and gradients help constrain the possible depths and lateral limits of the crustal magnetic anomaly sources for Antarctica and the circumjacent southern Atlantic, Indian, and Pacific oceans. For East Antarctica, the anomalies help resolve relatively ancient cratonic boundaries and related sutures and magmatic intrusions, whereas at satellite altitude, they also offer insights on variations of lithospheric heat flow.
URI
https://repository.kopri.re.kr/handle/201206/16475
DOI
http://dx.doi.org/10.1029/2024JB029687
Type
Article
Station
해당사항없음
Indexed
SCIE
Appears in Collections  
2025-2025, 남극권 맨틀활동과 지체구조진화 연구 (25-25) / 박숭현 (PE25050)
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