[1] Analysis of Martian gravity and topography implies that crustal thickness variations created in the earliest evolution of planet have persisted to the present day. Relaxation of crustal thickness variations due to lower crustal flow by thermally activated creep is strongly temperature-dependent and so, for particular crustal rheology and thickness, provides a constraint on thermal evolution. Previous models have assumed that the heat flux from the mantle, which controls lower crustal temperatures, simply reflects radiogenic heat production. However, global thermal evolution models in which the mantle cools by solid-state thermal convection indicate that the additional contribution to near-surface heat flux due to secular cooling signifi...
Getting information about the martian crustal thickness is of primary interest for better understand...
Heat flow calculations based on geological and/or geophysical indicators can help to constrain the t...
The objective of this work is to improve understanding of the internal structure, crustal evolution,...
[1] We present a coupled thermal-magmatic model for the evolution of Mars ’ mantle and crust that ma...
The influences of variations in thermal conductivity due to composition, temperature, and pressure i...
Crustal thickness variations induce lateral pressure gradients which can drive flow in the lower cru...
The early thermal evolution of Mars is largely unconstrained. Models such as degree one convection [...
Crustal thickness variations induce lateral pressure gradients which can drive flow in the lower cru...
Abstract. The evolution of Mars is discussed using results from the recent Mars Global Surveyor (MGS...
Lacking plate tectonics and crustal recycling, the long-term evolution of the crust-mantle system of...
Lacking plate tectonics and crustal recycling, the long-term evolution of the crust-mantle system of...
On Mars, the internal heat is mainly transported by thermal conduction through the outer layers (i.e...
The rheology of the Martian mantle and the planet’s initial temperature is constrained with thermal ...
In order to find an explanation for the origin of the martian crustal dichotomy, a number of recent ...
In order to find an explanation for the origin of the martian crustal dichotomy, a number of recent ...
Getting information about the martian crustal thickness is of primary interest for better understand...
Heat flow calculations based on geological and/or geophysical indicators can help to constrain the t...
The objective of this work is to improve understanding of the internal structure, crustal evolution,...
[1] We present a coupled thermal-magmatic model for the evolution of Mars ’ mantle and crust that ma...
The influences of variations in thermal conductivity due to composition, temperature, and pressure i...
Crustal thickness variations induce lateral pressure gradients which can drive flow in the lower cru...
The early thermal evolution of Mars is largely unconstrained. Models such as degree one convection [...
Crustal thickness variations induce lateral pressure gradients which can drive flow in the lower cru...
Abstract. The evolution of Mars is discussed using results from the recent Mars Global Surveyor (MGS...
Lacking plate tectonics and crustal recycling, the long-term evolution of the crust-mantle system of...
Lacking plate tectonics and crustal recycling, the long-term evolution of the crust-mantle system of...
On Mars, the internal heat is mainly transported by thermal conduction through the outer layers (i.e...
The rheology of the Martian mantle and the planet’s initial temperature is constrained with thermal ...
In order to find an explanation for the origin of the martian crustal dichotomy, a number of recent ...
In order to find an explanation for the origin of the martian crustal dichotomy, a number of recent ...
Getting information about the martian crustal thickness is of primary interest for better understand...
Heat flow calculations based on geological and/or geophysical indicators can help to constrain the t...
The objective of this work is to improve understanding of the internal structure, crustal evolution,...