Comparing geophysical inversion and petrophysical measurements for northern Victoria Land, Antarctica

Maximilian Lowe, Tom Jordan, Jörg Ebbing, Nikola Koglin, Antonia Ruppel, Max Moorkamp, Andreas Läufer, Chris Green, Jonas Liebsch, Mikhail Ginga, Robert Larter

Research output: Contribution to journalArticlepeer-review

Abstract

Bedrock geology from Antarctica remains largely unknown since it is hidden beneath thick ice sheets. Geophysical methods such as gravity and magnetic inverse modelling provide a framework to infer crustal rock properties indirectly in Antarctica. However, due to limited availability of rock samples, validation against direct geological information is challenging. We present a new rock property catalogue containing density and susceptibility measurements on 320 rock samples from northern Victoria Land. This catalogue is used to assess the reliability of local and regional scale inverse results, including a new local high resolution magnetic inversion in the Mesa Range region and a previously published regional scale joint inversion of gravity and magnetic data in northern Victoria Land and the Wilkes Subglacial Basin. We compare our density and susceptibility measurements to global and local measurements from the literature to access the correlation to rock types and geological units. Furthermore, the measured values are compared against inverted values. The close correspondence between inverted and measured rock properties allows us to predict locations of rock types where currently such information is missing. The utility of measured susceptibility and density relationships for interpreting inversion output provides a strong incentive to incorporate local rock samples into geophysical studies of subglacial geology across Antarctica.

Original languageEnglish
Pages (from-to)276-291
Number of pages16
JournalGeophysical Journal International
Volume239
Issue number1
DOIs
Publication statusPublished - 1 Oct 2024

Bibliographical note

Publisher Copyright: © 2024 The Author(s).

Other keywords

  • Antarctica
  • Gravity anomalies and Earth structure
  • Joint inversion
  • Magnetic anomalies: modelling and interpretation
  • Rock and mineral magnetism

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