Thermophysical modeling of asteroids from WISE thermal infrared data - Significance of the shape model and the pole orientation uncertainties
arXiv:1504.04199 · doi:10.1016/j.icarus.2015.04.014
Abstract
In the analysis of thermal infrared data of asteroids by means of thermophysical models (TPMs) it is a common practice to neglect the uncertainty of the shape model and the rotational state, which are taken as an input for the model. Here, we present a novel method of investigating the importance of the shape model and the pole orientation uncertainties in the thermophysical modeling - the varied shape TPM (VS-TPM). Our method uses optical photometric data to generate various shape models that map the uncertainty in the shape and the rotational state. The TPM procedure is then run for all these shape models. We apply the implementation of the classical TPM as well as our VS-TPM to the convex shape models of several asteroids together with their thermal infrared data acquired by the NASA's Wide-field Infrared Survey Explorer (WISE) and compare the results. These show that the uncertainties of the shape model and the pole orientation can be very important (e.g., for the determination of the thermal inertia) and should be considered in the thermophysical analyses. We present thermophysical properties for six asteroids - (624) Hektor, (771) Libera, (1036) Ganymed, (1472) Muonio, (1627) Ivar, and (2606) Odessa.
Accepted for publication in Icarus (April 10, 2015)
References in corpus (6)
- Thermal inertia of near-Earth asteroids and implications for the magnitude of the Yarkovsky effect
- Thermal inertia of main belt asteroids smaller than 100 km from IRAS data
- Asteroids' physical models from combined dense and sparse photometry and scaling of the YORP effect by the observed obliquity distribution
- (25143) Itokawa: The Power of Radiometric Techniques for the Interpretation of Remote Thermal Observations in the Light of the Hayabusa Rendezvous Results
- Physical characterisation of near-Earth asteroid (1620) Geographos. Reconciling radar and thermal-infrared observations
- Surface Properties of Asteroids from Mid-Infrared Observations and Thermophysical Modeling
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