The thermal inertia of an asteroid's surface can provide insight into regolith properties, such as the presence of a layer of fine dust, the density and thermal conductivity of a rocky surface, and, together with other observational data, mineralogy. Knowledge of the surface characteristics of asteroids is important for planetary defense initiatives and the extraction of resources ("asteroid mining"). A simple means of estimating asteroid thermal inertia has been proposed by Harris & Drube, which is suitable for application to large sets of thermal-infrared observational data, such as those obtained by infrared space telescopes. We compare results from the Harris-Drube estimator with recently published values of asteroid thermal inertia fro...
The rapid accumulation of thermal infrared observations and shape models of asteroids has led to inc...
The subject of this work is the physical characterization of asteroids, focusing on the thermal iner...
While the physical characterization of near-Earth objects (NEOs) is progressing at a much slower rat...
The thermal inertia of an asteroid's surface can provide insight into regolith properties, such as t...
International audienceRecent works have shown that the thermal inertia of km-sized near-Earth astero...
Non-resolved thermal infrared observations enable studies of thermal and physical properties of aste...
International audienceRecent works have shown that the thermal inertia of km-sized near-Earth astero...
The subject of this work is the physical characterization of asteroids, focusing on the thermal iner...
The field of asteroid thermophysical modeling has experienced an extraordinary growth in the last te...
The subject of this work is the physical characterization of asteroids, focusing on the thermal iner...
The field of asteroid thermophysical modeling has experienced an extraordinary growth in the last te...
The field of asteroid thermophysical modeling has experienced an extraordinary growth in the last te...
The field of asteroid thermophysical modeling has experienced an extraordinary growth in the last te...
The field of asteroid thermophysical modeling has experienced an extraordinary growth in the last te...
The subject of this work is the physical characterization of asteroids, focusing on the thermal iner...
The rapid accumulation of thermal infrared observations and shape models of asteroids has led to inc...
The subject of this work is the physical characterization of asteroids, focusing on the thermal iner...
While the physical characterization of near-Earth objects (NEOs) is progressing at a much slower rat...
The thermal inertia of an asteroid's surface can provide insight into regolith properties, such as t...
International audienceRecent works have shown that the thermal inertia of km-sized near-Earth astero...
Non-resolved thermal infrared observations enable studies of thermal and physical properties of aste...
International audienceRecent works have shown that the thermal inertia of km-sized near-Earth astero...
The subject of this work is the physical characterization of asteroids, focusing on the thermal iner...
The field of asteroid thermophysical modeling has experienced an extraordinary growth in the last te...
The subject of this work is the physical characterization of asteroids, focusing on the thermal iner...
The field of asteroid thermophysical modeling has experienced an extraordinary growth in the last te...
The field of asteroid thermophysical modeling has experienced an extraordinary growth in the last te...
The field of asteroid thermophysical modeling has experienced an extraordinary growth in the last te...
The field of asteroid thermophysical modeling has experienced an extraordinary growth in the last te...
The subject of this work is the physical characterization of asteroids, focusing on the thermal iner...
The rapid accumulation of thermal infrared observations and shape models of asteroids has led to inc...
The subject of this work is the physical characterization of asteroids, focusing on the thermal iner...
While the physical characterization of near-Earth objects (NEOs) is progressing at a much slower rat...