Jeremy Bloxham
Affiliations: | Earth & Planetary Sciences | Harvard University, Cambridge, MA, United States |
Area:
GeophysicsWebsite:
http://science.fas.harvard.edu/people/jeremy-bloxhamGoogle:
"Jeremy Bloxham"Bio:
https://www.mathgenealogy.org/id.php?id=145941
http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.372644
Mean distance: (not calculated yet)
Parents
Sign in to add mentorDavid Gubbins | grad student | 1986 | Cambridge | |
(Geomagnetic Secular Variation.) |
Children
Sign in to add traineeJohn W. M. Bush | grad student | 1993 | Harvard |
Kaushik Katari | grad student | 2000 | Harvard |
Mathieu Dumberry | grad student | 2004 | Harvard |
Sabine Stanley | grad student | 2004 | Harvard |
Veronika Soukhovitskaya | grad student | 2010 | Harvard |
Michael G. Sterenborg | grad student | 2011 | Harvard |
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Publications
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Bloxham J, Cao H, Stevenson DJ, et al. (2024) A rapidly time-varying equatorial jet in Jupiter's deep interior. Nature. 627: 64-66 |
Yadav RK, Bloxham J. (2020) Deep rotating convection generates the polar hexagon on Saturn. Proceedings of the National Academy of Sciences of the United States of America |
Kulowski L, Cao H, Bloxham J. (2020) Contributions to Jupiter's Gravity Field From Dynamics in the Dynamo Region Journal of Geophysical Research: Planets. 125 |
Moore KM, Cao H, Bloxham J, et al. (2019) Time variation of Jupiter’s internal magnetic field consistent with zonal wind advection Nature Astronomy. 3: 730-735 |
Moore KM, Yadav RK, Kulowski L, et al. (2018) A complex dynamo inferred from the hemispheric dichotomy of Jupiter's magnetic field. Nature. 561: 76-78 |
Kaspi Y, Galanti E, Hubbard WB, et al. (2018) Jupiter's atmospheric jet streams extend thousands of kilometres deep. Nature. 555: 223-226 |
Connerney JEP, Kotsiaros S, Oliversen RJ, et al. (2018) A New Model of Jupiter's Magnetic Field From Juno's First Nine Orbits Geophysical Research Letters. 45: 2590-2596 |
Bolton SJ, Adriani A, Adumitroaie V, et al. (2017) Jupiter's interior and deep atmosphere: The initial pole-to-pole passes with the Juno spacecraft. Science (New York, N.Y.). 356: 821-825 |
Moore KM, Bloxham J, Connerney JEP, et al. (2017) The analysis of initial Juno magnetometer data using a sparse magnetic field representation Geophysical Research Letters. 44: 4687-4693 |
Moore KM, Bloxham J. (2017) The construction of sparse models of Mars's crustal magnetic field Journal of Geophysical Research: Planets. 122: 1443-1457 |