Knowledge of the surface thermal inertia of an asteroid can provide insight into its surface structure: porous material has a lower thermal inertia than rock. We develop a means to estimate thermal inertia values of asteroids and use it to show that thermal inertia appears to increase with spin period in the case of main-belt asteroids (MBAs). Similar behavior is found on the basis of thermophysical modeling for near-Earth objects (NEOs). We interpret our results in terms of rapidly increasing material density and thermal conductivity with depth, and provide evidence that thermal inertia increases by factors of 10 (MBAs) to 20 (NEOs) within a depth of just 10 cm. Our results are consistent with a very general picture of rapidly changing mat...
While the physical characterization of near-Earth objects (NEOs) is progressing at a much slower rat...
While the physical characterization of near-Earth objects (NEOs) is progressing at a much slower rat...
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 surface structure: ...
One of the largest uncertainties in the outcome of an attempt to deflect an asteroid with a kinetic ...
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...
Thermal inertia is the physical parameter that controls the temperature distribution over the surfac...
We have used a new method to analyze the largest available database of thermal- infrared observation...
The subject of this work is the physical characterization of asteroids, focusing on the thermal iner...
The thermal inertia of an asteroid's surface can provide insight into regolith properties, such as t...
Recent works have shown that the thermal inertia of km-sized near-Earth asteroids (NEAs) is more tha...
We have developed and validated a thermophysical model, which gives a detailed description of the th...
Context. Asteroids smaller than about 100 m in diameter are observed to rotate very fast, with perio...
A variety of thermal models are used for the derivation of asteroid physical parameters from thermal...
While the physical characterization of near-Earth objects (NEOs) is progressing at a much slower rat...
While the physical characterization of near-Earth objects (NEOs) is progressing at a much slower rat...
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 surface structure: ...
One of the largest uncertainties in the outcome of an attempt to deflect an asteroid with a kinetic ...
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...
Thermal inertia is the physical parameter that controls the temperature distribution over the surfac...
We have used a new method to analyze the largest available database of thermal- infrared observation...
The subject of this work is the physical characterization of asteroids, focusing on the thermal iner...
The thermal inertia of an asteroid's surface can provide insight into regolith properties, such as t...
Recent works have shown that the thermal inertia of km-sized near-Earth asteroids (NEAs) is more tha...
We have developed and validated a thermophysical model, which gives a detailed description of the th...
Context. Asteroids smaller than about 100 m in diameter are observed to rotate very fast, with perio...
A variety of thermal models are used for the derivation of asteroid physical parameters from thermal...
While the physical characterization of near-Earth objects (NEOs) is progressing at a much slower rat...
While the physical characterization of near-Earth objects (NEOs) is progressing at a much slower rat...
Thermal inertia determines the temperature distribution over the surface of an asteroid and therefor...