Abstract The interior evolution of Mercury—the innermost planet in the solar system, with its exceptional high density—is poorly known. Our current knowledge of Mercury is based on observations from Mariner 10’s three flybys. That knowledge includes the important dis-coveries of a weak, active magnetic field and a system of lobate scarps that suggests limited radial contraction of the planet during the last 4 billion years. We review existing models of Mercury’s interior evolution and further present new 2D and 3D convection models that consider both a strongly temperature-dependent viscosity and core cooling. These studies provide a framework for understanding the basic characteristics of the planet’s internal evo-lution as well as the rol...
With the goal of furthering our understanding of the interior structure of Mercury, this work tries ...
With the goal of furthering our understanding of the interior structure of Mercury, this work tries ...
Current geophysical knowledge of the planet Mercury is based upon observations from ground-based ast...
The interior evolution of Mercury—the innermost planet in the solar system, with its exceptional hig...
Mercury's geological and internal evolution presents an interesting enigma: are there conditions tha...
[1] A number of observations performed by the MESSENGER spacecraft can now be employed to better und...
We describe the current state of knowledge about Mercury's interior structure. We review the availab...
We describe the current state of knowledge about Mercury's interior structure. We review the availab...
The presence of the global magnetic field of Mercury has implications for the interior structure of ...
The presence of the global magnetic field of Mercury has implications for the interior structure of ...
Mercury probably formed hot with early differentiation of an iron core. If this core is pure iron, ...
Mercury probably formed hot with early differentiation of an iron core. If this core is pure iron, ...
We have studied the thermal and magnetic field evolution of planet Mercury with a core of Fe–Si allo...
We have studied the thermal and magnetic field evolution of planet Mercury with a core of Fe–Si allo...
We have studied the thermal and magnetic field evolution of planet Mercury with a core of Fe–Si allo...
With the goal of furthering our understanding of the interior structure of Mercury, this work tries ...
With the goal of furthering our understanding of the interior structure of Mercury, this work tries ...
Current geophysical knowledge of the planet Mercury is based upon observations from ground-based ast...
The interior evolution of Mercury—the innermost planet in the solar system, with its exceptional hig...
Mercury's geological and internal evolution presents an interesting enigma: are there conditions tha...
[1] A number of observations performed by the MESSENGER spacecraft can now be employed to better und...
We describe the current state of knowledge about Mercury's interior structure. We review the availab...
We describe the current state of knowledge about Mercury's interior structure. We review the availab...
The presence of the global magnetic field of Mercury has implications for the interior structure of ...
The presence of the global magnetic field of Mercury has implications for the interior structure of ...
Mercury probably formed hot with early differentiation of an iron core. If this core is pure iron, ...
Mercury probably formed hot with early differentiation of an iron core. If this core is pure iron, ...
We have studied the thermal and magnetic field evolution of planet Mercury with a core of Fe–Si allo...
We have studied the thermal and magnetic field evolution of planet Mercury with a core of Fe–Si allo...
We have studied the thermal and magnetic field evolution of planet Mercury with a core of Fe–Si allo...
With the goal of furthering our understanding of the interior structure of Mercury, this work tries ...
With the goal of furthering our understanding of the interior structure of Mercury, this work tries ...
Current geophysical knowledge of the planet Mercury is based upon observations from ground-based ast...