References#
Anderson, J. D., Schubert, G., Jacobson, R. A., Lau, E. L., Moore, W. B., & Sjogren, W. L. (1998). Europa’s differentiated internal structure: Inferences from four Galileo encounters. Science, 281, 2019–2022. doi:10.1126/science.281.5385.2019
Anderson, J. D., Jacobson, R. A., Lau, E. L., Moore, W. B., & Schubert, G. (2001). Io’s gravity field and interior structure. J. Geophys. Res., 106, 32963–32969. doi:10.1029/2000JE001367
Anderson, J. D., Jacobson, R. A., McElrath, T. P., Moore, W. B., & Schubert, G. (2001). Shape, mean radius, gravity field, and interior structure of Callisto. Icarus, 153(1), 157–161. doi:10.1006/icar.2001.6664
Ardalan, A. A., Karimi, R., & Grafarend, E. W. (2009). A New Reference Equipotential Surface, and Reference Ellipsoid for the Planet Mars. Earth, Moon, and Planets, 106(1), 1. doi:10.1007/s11038-009-9342-7
Brozović, M., Showalter, M. R., Jacobson, R. A., & Buie, M. W. (2015). The orbits and masses of satellites of Pluto. Icarus, 246, 317–329. doi:10.1016/j.icarus.2014.03.015
Corlies, P., Hayes, A. G., Birch, S. P. D., Lorenz, R., Stiles, B. W., Kirk, R., Poggiali, V., Zebker, H., & Iess, L. (2017). Titan’s Topography and Shape at the End of the Cassini Mission. Geophysical Research Letters, 44(23), 11,754-11,761. doi:10.1002/2017GL075518
Durante, D., Hemingway, D. J., Racioppa, P., Iess, L., & Stevenson, D. J. (2019). Titan’s gravity field and interior structure after Cassini. Icarus, 326, 123–132. doi:10.1016/j.icarus.2019.03.003
Gomez Casajus, L., Ermakov, A. I., Zannoni, M., Keane, J. T., Stevenson, D., Buccino, D. R., Durante, D., Parisi, M., Park, R. S., Tortora, P., & Bolton, S. J. (2022). Gravity Field of Ganymede After the Juno Extended Mission. Geophysical Research Letters, 49(24), e2022GL099475. doi:10.1029/2022GL099475
Hofmann-Wellenhof, B., & Moritz, H. (2006). Physical Geodesy (2nd, corr. ed. 2006 edition ed.). Wien; New York: Springer.
Jacobson, R. A. (2021), The Orbits of the Regular Jovian Satellites and the Orientation of the Pole of Jupiter, personal communication to Horizons/NAIF. JUP365, accessed via JPL Solar System Dynamics
Jacobson, R. (2022). The Orbits of the Main Saturnian Satellites, the Saturnian System Gravity Field, and the Orientation of Saturn’s Pole. The Astronomical Journal, 164, 199. doi:10.3847/1538-3881/ac90c9
Karcol, R., Mikuška, J., & Marušiak, I. (2017). Normal earth gravity field versus gravity effect of layered ellipsoidal model. In Understanding the Bouguer Anomaly (pp. 63-77). Elsevier.
Karimi, R., Azmoudeh Ardalan, A., & Vasheghani Farahani, S. (2017, October). The size, shape and orientation of the asteroid Vesta based on data from the Dawn mission. Earth and Planetary Science Letters. Elsevier BV. doi:10.1016/j.epsl.2017.07.033
Konopliv, A. S., Park, R. S., Vaughan, A. T., Bills, B. G., Asmar, S. W., Ermakov, A. I., Rambaux, N., Raymond, C. A., Castillo-Rogez, J. C., Russell, C. T., Smith, D. E., & Zuber, M. T. (2018). The Ceres gravity field, spin pole, rotation period and orbit from the Dawn radiometric tracking and optical data. Icarus, 299, 411–429. doi:10.1016/j.icarus.2017.08.005
Lakshmanan, J. (1991). The generalized gravity anomaly: Endoscopic microgravity. Geophysics, 56(5), 712-723. doi:10.1190/1.1443090
Le Maistre, S., Rivoldini, A., Caldiero, A., Yseboodt, M., Baland, R.-M., Beuthe, M., Van Hoolst, T., Dehant, V., Folkner, W. M., Buccino, D., Kahan, D., Marty, J.-C., Antonangeli, D., Badro, J., Drilleau, M., Konopliv, A., Péters, M.-J., Plesa, A.-C., Samuel, H., Tosi, N., Wieczorek, M., Lognonné, P., Panning, M., Smrekar, S. & Banerdt, W. B. (2023). Spin state and deep interior structure of Mars from InSight radio tracking. Nature, 1–5. doi:10.1038/s41586-023-06150-0
Lemoine, F. G., Kenyon, S. C., Factor, J. K., Trimmer, R. G., Pavlis, N. K., Chinn, D. S., Cox, C. M., Klosko, S. M., Lutchke, S. B., Torrence, M. H., Wang, Y. M., Williamson, R. G., Pavlis, E. C., Rapp, R. H., & Olson, T. R. (1998). The Development of the Joint NASA GSFC and the National Imagery and Mapping Agency (NIMA) Geopotential Model EGM96. NASA Goddard Space Flight Center, NASA/TP 1998-206861
Li, X. and H. J. Gotze, (2001). Tutorial: Ellipsoid, geoid, gravity, geodesy, and geophysics, Geophysics, 66(6), p. 1660-1668, doi:10.1190/1.1487109
Maia, J. (2024). Spherical harmonic models of the shape of Mercury [Data set]. Zenodo. doi:10.5281/zenodo.10809345
Mazarico, E., Genova, A., Goossens, S., Lemoine, F. G., Neumann, G. A., Zuber, M. T., Smith, D. E., & Solomon, S. C. (2014). The gravity field, orientation, and ephemeris of Mercury from MESSENGER observations after three years in orbit. Journal of Geophysical Research: Planets, 119(12), 2417–2436. doi:10.1002/2014JE004675
Moritz, H. (1988). Geodetic reference system 1980. Bull. Geodesique 62, 348–358. doi:10.1007/BF02520722 (see the corrigendum)
Nimmo, F., Thomas, P., Pappalardo, R., & Moore, W. (2007). The global shape of Europa: Constraints on lateral shell thickness variations. Icarus, 191(1), 183–192. doi:10.1016/j.icarus.2007.04.021
Nimmo, F., Umurhan, O., Lisse, C. M., Bierson, C. J., Lauer, T. R., Buie, M. W., Throop, H. B., Kammer, J. A., Roberts, J. H., McKinnon, W. B., Zangari, A. M., Moore, J. M., Stern, S. A., Young, L. A., Weaver, H. A., Olkin, C. B., & Ennico, K. (2017). Mean radius and shape of Pluto and Charon from New Horizons images. Icarus, 287, 12–29. doi:10.1016/j.icarus.2016.06.027
Park, R. S., Vaughan, A. T., Konopliv, A. S., Ermakov, A. I., Mastrodemos, N., Castillo-Rogez, J. C., Joy, S. P., Nathues, A., Polanskey, C. A., Rayman, M. D., Riedel, J. E., Raymond, C. A., Russell, C. T., & Zuber, M. T. (2019). High-resolution shape model of Ceres from stereophotoclinometry using Dawn Imaging Data. Icarus, 319, 812–827. doi:10.1016/j.icarus.2018.10.024
Park, R. S., Mastrodemos, N., Jacobson, R. A., Berne, A., Vaughan, A. T., Hemingway, D. J., Leonard, E. J., Castillo-Rogez, J. C., Cockell, C. S., Keane, J. T., Konopliv, A. S., Nimmo, F., Riedel, J. E., Simons, M., & Vance, S. (2024). The Global Shape, Gravity Field, and Libration of Enceladus. Journal of Geophysical Research: Planets, 129(1), e2023JE008054. doi:10.1029/2023JE008054
Pěč, K. & Martinec, Z. (1983). Expansion of geoid heights over a triaxial Earth’s ellipsoid into a spherical harmonic series. Studia Geophysica et Geodaetica, 27, 217-232. doi: 10.1007/BF01592791
Russell, C. T., Raymond, C. A., Coradini, A., McSween, H. Y., Zuber, M. T., Nathues, A., et al. (2012). Dawn at Vesta: Testing the Protoplanetary Paradigm. Science. doi:10.1126/science.1219381
Thomas, P. C., Davies, M. E., Colvin, T. R., Oberst, J., Schuster, P., Neukum, G., Carr, M. H., McEwen, A., Schubert, G., & Belton, M. J. S. (1998). The Shape of Io from Galileo Limb Measurements. Icarus, 135(1), 175–180. doi: 10.1006/icar.1998.5987
Vermeille, H. (2002). Direct transformation from geocentric coordinates to geodetic coordinates. Journal of Geodesy. 76. 451-454. doi:10.1007/s00190-002-0273-6
Wieczorek, M. A. (2015). Gravity and Topography of the Terrestrial Planets. In Treatise on Geophysics (pp. 153–193). Elsevier. doi:10.1016/b978-0-444-53802-4.00169-x
Zubarev, A., Nadezhdina, I., Oberst, J., Hussmann, H., & Stark, A. (2015). New Ganymede control point network and global shape model. Planetary and Space Science, 117, 246–249. doi:10.1016/j.pss.2015.06.022