Table A.1
The diameter estimates () of (41) Daphne collected in the literature.
# | ![]() |
![]() |
Method | Reference |
---|---|---|---|---|
(km) | (km) | |||
1 | 203.00 | 60.90 | STM | Morrison & Zellner (2007) |
2 | 174.00 | 35.10 | STM | Tedesco et al. (2004b) |
3 | 172.43 | 12.24 | STM | Ryan & Woodward (2010) |
4 | 207.87 | 31.56 | NEATM | Ryan & Woodward (2010) |
5 | 187.00 | 60.00 | LCOCC | Ďurech et al. (2011) |
6 | 201.50 | 22.50 | TPM | Matter et al. (2011) |
7 | 185.50 | 10.50 | TPM | Matter et al. (2011) |
8 | 179.61 | 7.74 | STM | Usui et al. (2011) |
9 | 205.50 | 5.64 | NEATM | Masiero et al. (2012) |
10 | 186.00 | 81.00 | LCIMG | Hanuš et al. (2013b) |
11 | 198.74 | 185.13 | NEATM | Nugent et al. (2015) |
12 | 188.00 | 15.00 | ADAM | Hanuš et al. (2017b) |
13 | 187.00 | 21.50 | ADAM | This work |
Notes. For each, the 3 σ uncertainty, method, and bibliographic reference are reported. The methods are ADAM: Multidata 3D Modeling, LCIMG: 3D Model scaled with Imaging, LCOCC: 3D Model scaled with Occultation, NEATM: Near-Earth Asteroid Thermal Model, STM: Standard Thermal Model, TPM: Thermophysical Model.
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