Context. Earlier work suggests that slowly rotating asteroids should have higher thermal inertias than faster rotators because the heat wave penetrates deeper into the subsurface. However, thermal inertias have been determined mainly for fast rotators due to selection effects in the available photometry used to obtain shape models required for thermophysical modelling (TPM). Aims. Our aims are to mitigate these selection effects by producing shape models of slow rotators, to scale them and compute their thermal inertia with TPM, and to verify whether thermal inertia increases with the rotation period. Methods. To decrease the bias against slow rotators, we conducted a photometric observing campaign of main-belt asteroids with periods longer...
The thermal inertia of an asteroid's surface can provide insight into regolith properties, such as t...
Calculating accurate values of thermal inertia for asteroids is a difficult process requiring a shap...
Non-resolved thermal infrared observations enable studies of thermal and physical properties of aste...
Context. Earlier work suggests that slowly rotating asteroids should have higher thermal inertias th...
International audienceContext. Recent results for asteroid rotation periods from the TESS mission sh...
Marciniak, A. et. al..-- 33 p.The available set of spin and shape modelled asteroids is strongly bia...
We have developed and validated a thermophysical model, which gives a detailed description of the th...
Context. The available set of spin and shape modelled asteroids is strongly biased against slowly ro...
Non-resolved thermal infrared observations enable studies of thermal and physical properties of aste...
A variety of thermal models are used for the derivation of asteroid physical parameters from thermal...
International audienceConvex shape models and spin vectors of asteroids are now routinely derived fr...
International audienceRecent works have shown that the thermal inertia of km-sized near-Earth astero...
The thermal inertia of an asteroid's surface can provide insight into regolith properties, such as t...
Calculating accurate values of thermal inertia for asteroids is a difficult process requiring a shap...
Non-resolved thermal infrared observations enable studies of thermal and physical properties of aste...
Context. Earlier work suggests that slowly rotating asteroids should have higher thermal inertias th...
International audienceContext. Recent results for asteroid rotation periods from the TESS mission sh...
Marciniak, A. et. al..-- 33 p.The available set of spin and shape modelled asteroids is strongly bia...
We have developed and validated a thermophysical model, which gives a detailed description of the th...
Context. The available set of spin and shape modelled asteroids is strongly biased against slowly ro...
Non-resolved thermal infrared observations enable studies of thermal and physical properties of aste...
A variety of thermal models are used for the derivation of asteroid physical parameters from thermal...
International audienceConvex shape models and spin vectors of asteroids are now routinely derived fr...
International audienceRecent works have shown that the thermal inertia of km-sized near-Earth astero...
The thermal inertia of an asteroid's surface can provide insight into regolith properties, such as t...
Calculating accurate values of thermal inertia for asteroids is a difficult process requiring a shap...
Non-resolved thermal infrared observations enable studies of thermal and physical properties of aste...