From Micro-grains to Planets: Advances in Fundamental Rock Magnetism
From Micro-grains to Planets: Advances in Fundamental Rock Magnetism
Session ID#: 282302
Session Description:
Fundamental rock magnetic properties are essential for understanding the origins and stability of magnetic records within terrestrial and extraterrestrial materials. Rapid advancement of mineral and rock magnetic theories and analytical methods are revolutionizing our capacity to extract critical data regarding geomagnetic field variations, planetary history, environmental change, and modern anthropogenic processes.
This session explores recent breakthroughs in fundamental rock magnetism across all scales, from theoretical frameworks and laboratory experiments to the automated interpretation of complex datasets. We invite contributions covering micromagnetic modeling, anisotropy, remanence acquisition, and grain-size-dependent properties. Additionally, we welcome studies focused on advanced magnetization imaging, magnetic mineral unmixing, and innovative efforts to incorporate AI into the standard rock magnetic toolset. By bridging traditional mineral magnetism with emerging computational technologies and advances in paleomagnetism and rock magnetism, this session aims to advance our understanding of how magnetic materials record the history of the Earth and our own solar system.
This session explores recent breakthroughs in fundamental rock magnetism across all scales, from theoretical frameworks and laboratory experiments to the automated interpretation of complex datasets. We invite contributions covering micromagnetic modeling, anisotropy, remanence acquisition, and grain-size-dependent properties. Additionally, we welcome studies focused on advanced magnetization imaging, magnetic mineral unmixing, and innovative efforts to incorporate AI into the standard rock magnetic toolset. By bridging traditional mineral magnetism with emerging computational technologies and advances in paleomagnetism and rock magnetism, this session aims to advance our understanding of how magnetic materials record the history of the Earth and our own solar system.
Co-Sponsor(s):
- DI - Study of the Earth's Deep Interior
- MR - Mineral and Rock Physics
- T - Tectonophysics
- V - Volcanology, Geochemistry and Petrology
Index Terms:
1518 Magnetic fabrics and anisotropy [GEOMAGNETISM AND PALEOMAGNETISM]
1519 Magnetic mineralogy and petrology [GEOMAGNETISM AND PALEOMAGNETISM]
1521 Paleointensity [GEOMAGNETISM AND PALEOMAGNETISM]
1540 Rock and mineral magnetism [GEOMAGNETISM AND PALEOMAGNETISM]
Primary Convener: Joshua M Feinberg, University of Minnesota Twin Cities, Institute for Rock Magnetism, Department of Earth & Environmental Sciences, Minneapolis, MN, United States
Conveners: Caue Borlina, Purdue University, Earth, Atmospheric, and Planetary Sciences, West Lafayette, United States and Roger R Fu, Harvard University, Cambridge, MA, United States
Student/Early Career Convener: Caue Borlina, Purdue University, Earth, Atmospheric, and Planetary Sciences, West Lafayette, United States
See more of: Geomagnetism, Paleomagnetism and Electromagnetism