Containing only a few percent the mass of the moon, the current asteroid belt is around three to four orders of magnitude smaller that its primordial mass inferred from disk models. Yet dynamical studies have shown that the asteroid belt could not have been depleted by more than about an order of magnitude over the past ~4 Gyr. The remainder of the mass loss must have taken place during an earlier phase of the solar system's evolution. An orbital instability in the outer solar system occurring during the process of terrestrial planet formation can reproduce the broad characteristics of the inner solar system. Here, we test the viability of this model within the constraints of the main belt's low present-day mass and orbital structure. While...
The asteroid belt is found today in a dramatically different state than that immediately following i...
International audienceThe main asteroid belt (MB) is low in mass but dynamically excited, with much ...
International audienceThe main asteroid belt (MB) is low in mass but dynamically excited, with much ...
International audienceContaining only a few percent the mass of the moon, the current asteroid belt ...
International audienceReproducing the large Earth/Mars mass ratio requires a strong mass depletion i...
Reproducing the large Earth/Mars mass ratio requires a strong mass depletion in solids within the pr...
The dynamical origin of the inner solar system remains heavily debated. Models are constrained by th...
An orbital instability between the solar system’s giant planets (the so-called Nice Model) has been ...
International audienceReproducing the large mass ratio between the Earth and Mars requires that the ...
The asteroid belt was dynamically shaped during and after planet formation. Despite representing a b...
International audienceThe dynamical origin of the inner solar system remains heavily debated. Models...
International audienceAn orbital instability between the solar system’s giant planets (the so-called...
International audienceAn orbital instability between the solar system’s giant planets (the so-called...
Reproducing the large mass ratio between the Earth and Mars requires that the terrestrial planets fo...
The asteroid belt contains less than a thousandth of Earth's mass and is radially segregated, with S...
The asteroid belt is found today in a dramatically different state than that immediately following i...
International audienceThe main asteroid belt (MB) is low in mass but dynamically excited, with much ...
International audienceThe main asteroid belt (MB) is low in mass but dynamically excited, with much ...
International audienceContaining only a few percent the mass of the moon, the current asteroid belt ...
International audienceReproducing the large Earth/Mars mass ratio requires a strong mass depletion i...
Reproducing the large Earth/Mars mass ratio requires a strong mass depletion in solids within the pr...
The dynamical origin of the inner solar system remains heavily debated. Models are constrained by th...
An orbital instability between the solar system’s giant planets (the so-called Nice Model) has been ...
International audienceReproducing the large mass ratio between the Earth and Mars requires that the ...
The asteroid belt was dynamically shaped during and after planet formation. Despite representing a b...
International audienceThe dynamical origin of the inner solar system remains heavily debated. Models...
International audienceAn orbital instability between the solar system’s giant planets (the so-called...
International audienceAn orbital instability between the solar system’s giant planets (the so-called...
Reproducing the large mass ratio between the Earth and Mars requires that the terrestrial planets fo...
The asteroid belt contains less than a thousandth of Earth's mass and is radially segregated, with S...
The asteroid belt is found today in a dramatically different state than that immediately following i...
International audienceThe main asteroid belt (MB) is low in mass but dynamically excited, with much ...
International audienceThe main asteroid belt (MB) is low in mass but dynamically excited, with much ...