Masses and Densities of Dwarf Planet Satellites Measured with ALMA
暂无分享,去创建一个
[1] J. L. Ortiz,et al. Tidally locked rotation of the dwarf planet (136199) Eris discovered via long-term ground-based and space photometry , 2022, Astronomy & Astrophysics.
[2] W. Grundy,et al. The Eris/Dysnomia system I: The orbit of Dysnomia , 2020, Icarus.
[3] Tobias Erhardt,et al. emcee v3: A Python ensemble sampling toolkit for affine-invariant MCMC , 2019, J. Open Source Softw..
[4] R. Hyodo,et al. Early formation of moons around large trans-Neptunian objects via giant impacts , 2019, Nature Astronomy.
[5] A. Youdin,et al. Trans-Neptunian binaries as evidence for planetesimal formation by the streaming instability , 2019, Nature Astronomy.
[6] S. Desch,et al. Haumea's Shape and Composition , 2019, 1904.00522.
[7] A. Sickafoose,et al. A stellar occultation by Vanth, a satellite of (90482) Orcus , 2018, Icarus.
[8] Y. Kovalev,et al. A quantitative analysis of systematic differences in the positions and proper motions of Gaia DR2 with respect to VLBI , 2018, Monthly Notices of the Royal Astronomical Society.
[9] B. Butler,et al. Medium-sized Satellites of Large Kuiper Belt Objects , 2018, The Astronomical Journal.
[10] G. Dudziński,et al. The size, shape, density and ring of the dwarf planet Haumea from a stellar occultation , 2017, Nature.
[11] G. Carraro,et al. Photometry of Centaurs and trans-Neptunian objects: 2060 Chiron (1977 UB), 10199 Chariklo (1997 CU26), 38628 Huya (2000 EB173), 28978 Ixion (2001 KX76), and 90482 Orcus (2004 DW) , 2016, 1605.08251.
[12] E. F. Arias,et al. THE SECOND REALIZATION OF THE INTERNATIONAL CELESTIAL REFERENCE FRAME BY VERY LONG BASELINE INTERFEROMETRY , 2015 .
[13] M. J. Reid,et al. Microarcsecond Radio Astrometry , 2013, 1312.2871.
[14] I. A. Steele,et al. A Pluto-like radius and a high albedo for the dwarf planet Eris from an occultation , 2011, Nature.
[15] D. Ragozzine,et al. ORBITS AND MASSES OF THE SATELLITES OF THE DWARF PLANET HAUMEA (2003 EL61) , 2009, 0903.4213.
[16] E. Schaller,et al. Water Ice on the Satellite of Kuiper Belt Object 2003 EL61 , 2006, astro-ph/0601534.
[17] M. W. Buie,et al. Orbits and Photometry of Pluto’s Satellites: Charon, S/2005 P1, and S/2005 P2 , 2005, astro-ph/0512491.
[18] P. Wizinowich,et al. Satellites of the Largest Kuiper Belt Objects , 2005, astro-ph/0510029.
[19] Jeff Foust,et al. The Charon/Pluto Mass Ratio from Center-of-Light Astrometry , 1997 .
[20] George W. Null,et al. Charon/Pluto Mass Ratio Obtained with HST CCD Observations in 1991 and 1993 , 1996 .
[21] James L. Elliot,et al. The Charon-Pluto mass ratio from MKO astrometry , 1994 .
[22] W. McKinnon,et al. On the origin of the Pluto-Charon binary , 1989 .