Context. Asteroids smaller than about 100 m in diameter are observed to rotate very fast, with periods often much shorter than the critical spin limit of 2.2 h. Some of these super-fast rotators can also achieve a very large semimajor axis drift induced by the Yarkovsky effect, which, in turn, is determined by internal and surface physical properties. Aims. We consider here a small super-fast-rotating near-Earth asteroid, designated as 2016 GE1. This object rotates in just about 34 s, and a large Yarkovsky effect has been determined from astrometry. By using these results, we aim to constrain the thermal inertia of the surface of this extreme object. Methods. We used a recently developed statistical method to determine the thermal propertie...
The subject of this work is the physical characterization of asteroids, focusing on the thermal iner...
International audienceContext. Recent results for asteroid rotation periods from the TESS mission sh...
Context. Earlier work suggests that slowly rotating asteroids should have higher thermal inertias th...
Thermal inertia is the physical parameter that controls the temperature distribution over the surfac...
Thermal inertia is the physical parameter that controls the temperature distribution over the surfac...
Thermal inertia of near-Earth asteroids and magnitude of the Yarkovsky effect M. Delbo* (1,2), A. De...
Knowledge of the surface thermal inertia of an asteroid can provide insight into surface structure: ...
Thermal inertia determines the temperature distribution over the surface of an asteroid and therefor...
Knowledge of the surface thermal inertia of an asteroid can provide insight into its surface structu...
The subject of this work is the physical characterization of asteroids, focusing on the thermal iner...
International audienceContext. Recent results for asteroid rotation periods from the TESS mission sh...
Context. Earlier work suggests that slowly rotating asteroids should have higher thermal inertias th...
Thermal inertia is the physical parameter that controls the temperature distribution over the surfac...
Thermal inertia is the physical parameter that controls the temperature distribution over the surfac...
Thermal inertia of near-Earth asteroids and magnitude of the Yarkovsky effect M. Delbo* (1,2), A. De...
Knowledge of the surface thermal inertia of an asteroid can provide insight into surface structure: ...
Thermal inertia determines the temperature distribution over the surface of an asteroid and therefor...
Knowledge of the surface thermal inertia of an asteroid can provide insight into its surface structu...
The subject of this work is the physical characterization of asteroids, focusing on the thermal iner...
International audienceContext. Recent results for asteroid rotation periods from the TESS mission sh...
Context. Earlier work suggests that slowly rotating asteroids should have higher thermal inertias th...