detalle del documento
IDENTIFICACIÓN

oai:arXiv.org:2411.09752

Tema
Astrophysics - Earth and Planetary... Astrophysics - Instrumentation and...
Autor
Yahalomi, Daniel A. Kipping, David Agol, Eric Nesvorny, David
Categoría

ciencias: astrofísica

Año

2024

fecha de cotización

20/11/2024

Palabras clave
equal ttv induced exoplanet planets edge systems periods planet period astrophysics
Métrico

Resumen

Transit timing variations (TTVs) are observed for exoplanets at a range of amplitudes and periods, yielding an ostensibly degenerate forest of possible explanations.

We offer some clarity in this forest, showing that systems with a distant perturbing planet preferentially show TTVs with a dominant period equal to either the perturbing planet's period or half the perturbing planet's period.

We demonstrate that planet induced TTVs are not expected with TTV periods below this exoplanet edge (lower period limit) and that systems with TTVs that fall below this limit likely contain additional mass in the system.

We present an explanation for both of these periods, showing that both aliasing of the conjunction induced synodic period and the near $1:2$ resonance super-period and tidal effects induce TTVs at periods equal to either the perturber's orbit or half-orbit.

We provide three examples of known systems for which the recovered TTV period induced by a distant perturbing planet is equal to the perturber's orbital period or half its orbital period.

We then investigate $\textit{Kepler}$ two-planet systems with TTVs and identify 13 two-planet systems with TTVs below this TTV period lower limit -- thus potentially uncovering the gravitational influence of new planets and/or moons.

We conclude by discussing how the exoplanet edge effects can be used to predict the presence of distance companion planets, in situations where TTVs are detected and where nearby companions can be ruled out by additional observations, such as radial velocity data.

;Comment: 18 pages, 7 figures, submitted to ApJL

Yahalomi, Daniel A.,Kipping, David,Agol, Eric,Nesvorny, David, 2024, The Exoplanet Edge: Planets Don't Induce Observable TTVs Faster than Half their Orbital Period

Documento

Abrir

Compartir

Fuente

Artículos recomendados por ES/IODE IA

Hespi: A pipeline for automatically detecting information from hebarium specimen sheets
science recognition institutional detects text-based text pipeline specimen