François Pétrélis: Simple Mechanism for Reversals of Earth’s Magnetic Field. In: Physical Review Letters. Band102, Nr.14, 2009, doi:10.1103/physrevlett.102.144503 (aps.org [abgerufen am 7. Oktober 2017]).
doi.org
John A. Tarduno et al.: A Hadean to Paleoarchean geodynamo recorded by single zircon crystals. Science 349, 2015, S. 521–524, doi:10.1126/science.aaa9114
Thébault, E. et al.: International Geomagnetic Reference Field: the 12th generation. In: Earth, Planets and Space. Band67, 2015, S.79, doi:10.1186/s40623-015-0228-9.
N.R. Nowaczyk et al.: Dynamics of the Laschamp geomagnetic excursion from Black Sea sediments. Earth and Planetary Science Letters 351–352, 2012, S. 54–69, doi:10.1016/j.epsl.2012.06.050.
Extremely rapid directional change during Matuyama-Brunhes geomagnetic polarity reversal. In: Geophysical Journal. 21. Juli 2014, doi:10.1093/gji/ggu287 (englisch, oxfordjournals.org).
Carlo Laj et al.: Dynamics of the earth magnetic field in the 10–75 kyr period comprising the Laschamp and Mono Lake excursions: New results from the French Chaîne des Puys in a global perspective. Earth and Planetary Science Letters 387, 2014, S. 184–197, doi:10.1016/j.epsl.2013.11.031.
A. De Santis et al.: Toward a possible next geomagnetic transition?. Nat. Hazards Earth Syst. Sci. 13, 2013, S. 3395–3403, doi:10.5194/nhess-13-3395-2013.
Motohiko Murakami, Alexander F. Goncharov, Nobuyoshi Miyajima, Daisuke Yamazaki, Nicholas Holtgrewe: Radiative thermal conductivity of single-crystal bridgmanite at the core-mantle boundary with implications for thermal evolution of the Earth. In: Earth and Planetary Science Letters, Band 578, Januar 2022, Artikel 117329, doi:10.1016/j.epsl.2021.117329.
Joseph G. O’Rourke, David J. Stevenson: Powering Earth’s dynamo with magnesium precipitation from the core. In: Nature. 529, 2016, S. 387, doi:10.1038/nature16495.
Philip W. Livermorea, Rainer Hollerbach, Andrew Jackson: Electromagnetically driven westward drift and inner-core superrotation in Earth’s core. PNAS 110, 2013, doi:10.1073/pnas.1307825110 (freier Volltext).
E. J. Spence, M. D. Nornberg, R. A. Bayliss, R. D. Kendrick and C. B. Forest: Fluctuation-driven magnetic fields in the Madison Dynamo Experiment. Bull. Am. Phys. Soc. 52 (2007) 189 doi:10.1063/1.2890753; siehe auch Phys. of Plasmas 15, 055910 (2008).
François Pétrélis: Simple Mechanism for Reversals of Earth’s Magnetic Field. In: Physical Review Letters. Band102, Nr.14, 2009, doi:10.1103/physrevlett.102.144503 (aps.org [abgerufen am 7. Oktober 2017]).
Gary A. Glatzmaiers, Paul, H. Roberts: A three-dimensional self-consistent computer simulation of a geomagnetic field reversal. In: Nature. 377, 1995, S. 203, doi:10.1038/377203a0.
B. M. Jakosky, M. Slipski, M. Benna, P. Mahaffy, M. Elrod, R. Yelle, S. Stone, N. Alsaeed: Mars’ atmospheric history derived from upper-atmosphere measurements of 38Ar/36Ar. In: Science, Band 355, Nr. 6332, März 2017, S. 1408–1410, doi:10.1126/science.aai772.
Sarah C. Steele, Roger R. Fu, Michael W. R. Volk, Thomas L. North, Alec R. Brenner, Adrian R. Muxworthy, Gareth S. Collins, Thomas M. Davison: Paleomagnetic evidence for a long-lived, potentially reversing martian dynamo at ~3.9 Ga. In: Science Advances, Band 9, Nr. 21, Mai 2023, doi:10.1126/sciadv.ade907.
Marcus DuPont, Jeremiah W. Murphy: Fundamental physical and resource requirements for a Martian magnetic shield. In: International Journal of Astrobiology, Band 20, Nr. 3, April 2021, S. 215–222, doi:10.1017/S1473550421000069.
Vlastimil Hart, Petra Nováková: Dogs are sensitive to small variations of the Earth’s magnetic field. In: Frontiers in Zoology 2013, doi:10.1186/1742-9994-10-80.