Lower-mantle seismic discontinuities and the thermal morphology of subducted slabs C Thomas, JM Kendall, J Lowman Earth and Planetary Science Letters 225 (1-2), 105-113, 2004 | 102 | 2004 |
Continental collisions in wide aspect ratio and high Rayleigh number two‐dimensional mantle convection models JP Lowman, GT Jarvis Journal of Geophysical Research: Solid Earth 101 (B11), 25485-25497, 1996 | 96 | 1996 |
Episodic tectonic plate reorganizations driven by mantle convection SD King, JP Lowman, CW Gable Earth and Planetary Science Letters 203 (1), 83-91, 2002 | 94 | 2002 |
Mantle convection flow reversals due to continental collisions JP Lowman, GT Jarvis Geophysical Research Letters 20 (19), 2087-2090, 1993 | 94 | 1993 |
Mantle convection models of continental collision and breakup incorporating finite thickness plates JP Lowman, GT Jarvis Physics of the Earth and Planetary Interiors 88 (1), 53-68, 1995 | 91 | 1995 |
The influence of mantle internal heating on lithospheric mobility: Implications for super-Earths C Stein, JP Lowman, U Hansen Earth and Planetary Science Letters 361, 448-459, 2013 | 84 | 2013 |
The influence of tectonic plates on mantle convection patterns, temperature and heat flow JP Lowman, SD King, CW Gable Geophysical Journal International 146 (3), 619-636, 2001 | 74 | 2001 |
Effects of mantle heat source distribution on supercontinent stability JP Lowman, GT Jarvis Journal of Geophysical Research: Solid Earth 104 (B6), 12733-12746, 1999 | 74 | 1999 |
The effects of supercontinent size and thermal insulation on the formation of mantle plumes PJ Heron, JP Lowman Tectonophysics 510 (1-2), 28-38, 2011 | 57 | 2011 |
Emulating the thermal structure of spherical shell convection in plane-layer geometry mantle convection models KA O’Farrell, JP Lowman Physics of the Earth and Planetary Interiors 182 (1-2), 73-84, 2010 | 56 | 2010 |
Steady plumes in viscously stratified, vigorously convecting, three‐dimensional numerical mantle convection models with mobile plates JP Lowman, SD King, CW Gable Geochemistry, Geophysics, Geosystems 5 (1), 2004 | 55 | 2004 |
Influences on the positioning of mantle plumes following supercontinent formation PJ Heron, JP Lowman, C Stein Journal of Geophysical Research: Solid Earth 120 (5), 3628-3648, 2015 | 50 | 2015 |
The pressure‐weakening effect in super‐Earths: Consequences of a decrease in lower mantle viscosity on surface dynamics C Stein, A Finnenkötter, JP Lowman, U Hansen Geophysical Research Letters 38 (21), 2011 | 49 | 2011 |
Thermal evolution of the mantle following continental aggregation in 3D convection models JP Lowman, CW Gable Geophysical Research Letters 26 (17), 2649-2652, 1999 | 47 | 1999 |
Mantle convection with reversing mobile plates: A benchmark study DE Koglin Jr, SR Ghias, SD King, GT Jarvis, JP Lowman Geochemistry, Geophysics, Geosystems 6 (9), 2005 | 45 | 2005 |
The role of the heating mode of the mantle in intermittent reorganization of the plate velocity field JP Lowman, SD King, CW Gable Geophysical Journal International 152 (2), 455-467, 2003 | 41 | 2003 |
Convection in a spherical shell heated by an isothermal core and internal sources: Implications for the thermal state of planetary mantles MH Shahnas, JP Lowman, GT Jarvis, HP Bunge Physics of the Earth and Planetary Interiors 168 (1-2), 6-15, 2008 | 34 | 2008 |
The impact of Rayleigh number on assessing the significance of supercontinent insulation PJ Heron, JP Lowman Journal of Geophysical Research: Solid Earth 119 (1), 711-733, 2014 | 33 | 2014 |
Comparison of spherical-shell and plane-layer mantle convection thermal structure in viscously stratified models with mixed-mode heating: implications for the incorporation of … KA O'Farrell, JP Lowman, HP Bunge Geophysical Journal International 192 (2), 456-472, 2013 | 32 | 2013 |
Stagnant lid convection in bottom‐heated thin 3‐D spherical shells: Influence of curvature and implications for dwarf planets and icy moons C Yao, F Deschamps, JP Lowman, C Sanchez‐Valle, PJ Tackley Journal of Geophysical Research: Planets 119 (8), 1895-1913, 2014 | 30 | 2014 |