Müller, T. G. and Kiss, Csaba and Scheirich, P. and Pravec, P. and O'Rourke, L. and Vilenius, E. and Altieri, B. (2014) Thermal infrared observations of asteroid (99942) Apophis with Herschel. ASTRONOMY & ASTROPHYSICS, 566. ISSN 0004-6361
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Abstract
The near-Earth asteroid (99942) Apophis is a potentially hazardous asteroid. We obtained far- infrared observations of this asteroid with the Herschel Space Observatory’s PACS instrument at 70, 100, and 160 μm. These were taken at two epochs in January and March 2013 during a close Earth encounter. These first thermal measurements of Apophis were taken at similar phase angles before and after opposition. We performed a detailed thermophysical model analysis by using the spin and shape model recently derived from applying a 2-period Fourier series method to a large sample of well-calibrated photometric observations. We find that the tumbling asteroid Apophis has an elongated shape with a mean diameter of 375+14 −10 m (of an equal volume sphere) and a ge- ometric V-band albedo of 0.30+0.05 −0.06. We find a thermal inertia in the range 250-800 Jm−2s−0.5K−1 (best solution at Γ = 600 Jm−2s−0.5K−1), which can be explained by a mixture of low conductivity fine regolith with larger rocks and boulders of high thermal inertia on the surface. The ther- mal inertia, and other similarities with (25143) Itokawa indicate that Apophis might also have a rubble-pile structure. If we combine the new size value with the assumption of an Itokawa-like density and porosity we estimate a mass between 4.4 and 6.2 · 1010 kg which is more than 2-3 times larger than previous estimates. We expect that the newly derived properties will influence impact scenario studies and influence the long-term orbit predictions of Apophis.
Item Type: | Article |
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Subjects: | Q Science / természettudomány > QB Astronomy, Astrophysics / csillagászat, asztrofizika |
SWORD Depositor: | MTMT SWORD |
Depositing User: | MTMT SWORD |
Date Deposited: | 26 Mar 2024 15:41 |
Last Modified: | 26 Mar 2024 15:41 |
URI: | https://real.mtak.hu/id/eprint/191041 |
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