- Rekier, J.; Trinh, A.; Triana, S.A.; Dehant, V. (2019). Internal energy dissipation in Enceladus's subsurface ocean from tides and libration and the role of inertial waves. JGR: Planets 124(8): 2198-2212. https://dx.doi.org/10.1029/2019JE005988, meer
- Beuthe, M.; Rivoldini, A.; Trinh, A. (2016). Enceladus's and Dione's floating ice shells supported by minimum stress isostasy. Geophys. Res. Lett. 43(19): 10088-10096. https://dx.doi.org/10.1002/2016GL070650, meer
- Cadek, O.; Tobie, G.; Van Hoolst, T.; Massé, M.; Choblet, G.; Lefèvre, A.; Mitri, G.; Baland, R.-M.; Behounková, M.; Bourgeois, O.; Trinh, A. (2016). Enceladus's internal ocean and ice shell constrained from Cassini gravity, shape, and libration data. Geophys. Res. Lett. 43(11): 5653-5660. https://dx.doi.org/10.1002/2016GL068634, meer
- Dehant, V.; Asael, D.; Baland, R.-M.; Baludikay, B.K.; Beghin, J.; Belza, J.; Beuthe, M.; Breuer, D.; Chernonozhkin, S.; Claeys, P.; Cornet, Y.; Cornet, L.; Coyette, A.; Debaille, V.; Delvigne, C.; Deproost, M.H.; De Winter, N.; Duchemin, C.; El Atrassi, F.; François, C.; De Keyser, J.; Gillmann, C.; Gloesener, E.; Goderis, S.; Hidaka, Y.; Höning, D.; Huber, M.; Hublet, G.; Javaux, E.J.; Karatekin, O.; Kodolanyi, J.; Lobo Revilla, L.; Maes, L.; Maggiolo, R.; Mattielli, N.; Maurice, M.; McKibbin, S.; Morschhauser, A.; Neumann, W.; Noack, L.; Pham, L.B.S.; Pittarello, L.; Plesa, A.C.; Rivoldini, A.; Robert, S.; Rosenblatt, P.; Spohn, T.; Storme, J.-Y.; Tosi, N.; Trinh, A.; Valdes, M.; Vandaele, A.C.; Vanhaecke, F.; Van Hoolst, T.; Van Roosbroek, N.; Wilquet, V.; Yseboodt, M. (2016). PLANET TOPERS: Planets, Tracing the Transfer, Origin, Preservation, and Evolution of their ReservoirS. Orig. Life Evol. Biosph. 46(4): 369-384. https://dx.doi.org/10.1007/s11084-016-9488-z, meer
- Van Hoolst, T.; Baland, R.-M.; Trinh, A. (2016). The diurnal libration and interior structure of Enceladus. Icarus 277: 311-318. https://dx.doi.org/10.1016/j.icarus.2016.05.025, meer
- Van Hoolst, T.; Baland, M; Trinh, A. (2013). On the librations and tides of large icy satellites. Icarus 226(1): 299-315. http://dx.doi.org/10.1016/j.icarus.2013.05.036, meer
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