Of the terrestrial planets, Earth and probably Mercury possess substantial intrinsic magnetic fields generated by core dynamos, while Venus and Mars apparently lack such fields. Thermal histories are calculated for these planets and are found to admit several possible present states, including those which suggest simple explanations for the observations; while the cores of Earth and Mercury are continuing to freeze, the cores of Venus and Mars may still be completely liquid. The models assume whole mantle convection, which is parameterized by a simple Nusselt-Rayleigh number relation and dictates the rate at which heat escapes from the core. It is found that completely fluid cores, devoid of intrinsic heat sources, are not likely to sustain...
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, ...
The magnetic field of Earth-like planets, which can protect the atmosphere against strong solar eros...
Of the terrestrial planets, Earth and probably Mercury possess substantial intrinsic magnetic fields...
In 1983 Stevenson et al. published a paper explaining the differences in the magnetism of the terre...
Of the terrestrial planets, Earth and Mercury have self-sustained fields while Mars and Venus do not...
International audienceOf the terrestrial planets, Earth and Mercury have self-sustained fields while...
International audienceOf the terrestrial planets, Earth and Mercury have self-sustained fields while...
and Venus do not. Magnetic field data recorded at Ganymede have been interpreted as ev-idence of a s...
Space missions have shown that most terrestrial bodies have an internally generated magnetic field i...
Vigorous convection in Earth's core powers our global magnetic field, which has survived for over th...
Vigorous convection in Earth's core powers our global magnetic field, which has survived for over th...
Vigorous convection in Earth's core powers our global magnetic field, which has survived for over th...
Venus lacks an internally generated magnetic field today. Whether one existed in the past is unknown...
The past several years have seen dramatic developments in the study of planetary magnetic fields, in...
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, ...
The magnetic field of Earth-like planets, which can protect the atmosphere against strong solar eros...
Of the terrestrial planets, Earth and probably Mercury possess substantial intrinsic magnetic fields...
In 1983 Stevenson et al. published a paper explaining the differences in the magnetism of the terre...
Of the terrestrial planets, Earth and Mercury have self-sustained fields while Mars and Venus do not...
International audienceOf the terrestrial planets, Earth and Mercury have self-sustained fields while...
International audienceOf the terrestrial planets, Earth and Mercury have self-sustained fields while...
and Venus do not. Magnetic field data recorded at Ganymede have been interpreted as ev-idence of a s...
Space missions have shown that most terrestrial bodies have an internally generated magnetic field i...
Vigorous convection in Earth's core powers our global magnetic field, which has survived for over th...
Vigorous convection in Earth's core powers our global magnetic field, which has survived for over th...
Vigorous convection in Earth's core powers our global magnetic field, which has survived for over th...
Venus lacks an internally generated magnetic field today. Whether one existed in the past is unknown...
The past several years have seen dramatic developments in the study of planetary magnetic fields, in...
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, ...
The magnetic field of Earth-like planets, which can protect the atmosphere against strong solar eros...