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20042022
most citedDetectability and Error Estimation in Orbital Fits

14 citations · 42 across the 5 of their papers we have counts for

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10 papers · 1 filter

astro-ph.EP202210 cited

Is the orbital distribution of multiplanet systems influenced by pure three-planet resonances?

Matías Cerioni, Cristian Beaugé, Tabaré Gallardo

We analyze the distribution of known multi-planet systems () in the plane of mean-motion ratios, and compare it with the resonance web generated by two-planet mean-motion…

astro-ph.EP2021

Creep Tide Model for the 3-Body Problem. The rotational evolution of a circumbinary planet

F. A. Zoppetti, H. Folonier, A. M. Leiva +1

We present a tidal model for treating the rotational evolution in the general three-body problem with arbitrary viscosities, in which all the masses are considered to be extended a…

astro-ph.EP2020

Semi-analytical model for planetary resonances: application to planets around single and binary stars

Tabaré Gallardo, Cristián Beaugé, Cristian A. Giuppone

In spite of planetary resonances being a common dynamical mechanism acting on planetary systems, no general model exists for describing their properties, particularly for commensur…

astro-ph.EP2020

Tidal friction in satellites and planets. The new version of the creep tide theory

Sylvio Ferraz-Mello, Cristian Beaugé, Hugo Alberto Folonier +1

Paper on the creep tide theory and its applications to satellites and planets with emphasis on a new set of differential equations allowing easier numerical studies. The creep tide…

astro-ph.EP20198 cited

A self-consistent weak friction model for the tidal evolution of circumbinary planets

F. A. Zoppetti, C. Beaugé, A. M. Leiva +1

We present a self-consistent model for the tidal evolution of circumbinary planets. Based on the weak-friction model, we derive expressions of the resulting forces and torques cons…

astro-ph.EP2018

Orbital migration and Resonance Offset of the Kepler-25 and K2-24 systems

C. Charalambous, X. S. Ramos, P. Benítez-Llambay +1

Based on the model described in Ramos et al., 2017, we present an analytical+numerical study of the resonance capture under Type-I migration for the Kepler-25 (Marcy et al., 2014)…