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Related papers: Characterizing WASP-43b's interior structure: unve…

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Love numbers measure the reaction of a celestial body to perturbing forces, such as the centrifugal force caused by rotation, or tidal forces resulting from the interaction with a companion body. These parameters are related to the interior…

Earth and Planetary Astrophysics · Physics 2024-02-21 L. M. Bernabò , Sz. Csizmadia , A. M. S. Smith , H. Rauer , A. Hatzes , M. Esposito , D. Gandolfi , J. Cabrera

Context. Increasing our knowledge of the interior structure, composition and density distribution of exoplanets is crucial to make progress in the understanding of exoplanetary formation, migration and habitability. However, the directly…

Earth and Planetary Astrophysics · Physics 2019-03-08 Sz. Csizmadia , H. Hellard , A. M. S. Smith

WASP-103b is the exoplanet with the highest expected deformation signature in its transit light curve and one of the shortest expected spiral-in times. Measuring the tidal deformation of the planet would allow us to estimate the second…

Earth and Planetary Astrophysics · Physics 2022-01-11 S. C. C. Barros , B. Akinsanm , G. Boué , A. M. S. Smith , J. Laskar , S. Ulmer-Moll , J. Lillo-Box , the CHEOPS team

With more than 6000 exoplanets discovered so far, about 12 percent are hot Jupiters. Their large sizes and short orbital periods make them valuable targets for studying planetary formation, atmospheres, and orbital evolution. We present a…

Theoretical calculations and some indirect observations show that massive exoplanets on tight orbits must decay due to tidal dissipation within their host stars. This orbital evolution could be observationally accessible through precise…

From its discovery, the WASP-18 system with its massive transiting planet on a tight orbit was identified as a unique laboratory for studies on tidal planet-star interactions. In an analysis of Doppler data, which include five new…

Earth and Planetary Astrophysics · Physics 2020-05-13 G. Maciejewski , H. A. Knutson , A. W. Howard , H. Isaacson , E. Fernandez-Lajus , R. P. Di Sisto , C. Migaszewski

Ultra-hot Jupiters present a unique opportunity to understand the physics and chemistry of planets at extreme conditions. WASP-12b stands out as an archetype of this class of exoplanets. We performed comprehensive analyses of the transits,…

We present new transit and occultation times for the hot Jupiter WASP-12b. The data are compatible with a constant period derivative: $\dot{P}=-29 \pm 3$ ms yr$^{-1}$ and $P/\dot{P}= 3.2$ Myr. However, it is difficult to tell whether we…

Earth and Planetary Astrophysics · Physics 2017-06-28 Kishore C. Patra , Joshua N. Winn , Matthew J. Holman , Liang Yu , Drake Deming , Fei Dai

Motivated by the previously reported high orbital decay rate of the planet WASP-43b, eight newly transit light curves are obtained and presented. Together with other data in literature, we perform a self-consistent timing analysis with data…

Earth and Planetary Astrophysics · Physics 2016-01-13 Ing-Guey Jiang , Chien-Yo Lai , Alexander Savushkin , David Mkrtichian , Kirill Antonyuk , Evgeny Griv , He-Feng Hsieh , Li-Chin Yeh

In this study, we examine the transit timing deviations of the extensively studied hot Jupiter WASP-12 b using a comprehensive dataset of 391 transit light curves. The dataset includes 7 new photometric observations obtained with the 1.3 m…

Tidal dissipation within a short-period transiting extrasolar planet perturbed by a companion object can drive orbital evolution of the system to a so-called tidal fixed point, in which the apsidal lines of the transiting planet and its…

Earth and Planetary Astrophysics · Physics 2015-05-13 Konstantin Batygin , Peter Bodenheimer , Gregory Laughlin

Tidal interactions are one of the primary drivers of orbital evolution for massive planets with short orbital periods. Tidal dissipation within host stars can cause the orbits of such planets to decay. However, the mechanisms of tidal…

Earth and Planetary Astrophysics · Physics 2025-08-27 Noah Sodickson , Samuel Grunblatt

Tidal orbital decay plays a vital role in the evolution of hot Jupiter systems. As of now, this was only observationally confirmed for the WASP-12 system. There are a few other candidates, including WASP-4 b, but no conclusive result could…

Earth and Planetary Astrophysics · Physics 2023-12-15 Jan-Vincent Harre , Alexis M. S. Smith

We observed two secondary eclipses of the exoplanet WASP-12b using the Infrared Array Camera on the Spitzer Space Telescope. The close proximity of WASP-12b to its G-type star results in extreme tidal forces capable of inducing apsidal…

Orbital dynamics provide valuable insights into the evolution and diversity of exoplanetary systems. Currently, only one hot Jupiter, WASP-12b, is confirmed to have a decaying orbit. Another, WASP-4b, exhibits hints of a changing orbital…

Earth and Planetary Astrophysics · Physics 2022-05-25 Jake D. Turner , Laura Flagg , Andrew Ridden-Harper , Ray Jayawardhana

A tidal interaction between a star and a close-in exoplanet leads to shrinkage of the planetary orbit and eventual tidal disruption of the planet. Measuring the shrinkage of the orbits will allow for the tidal quality parameter of the star…

Earth and Planetary Astrophysics · Physics 2022-12-14 N. M. Rosário , S. C. C. Barros , O. D. S. Demangeon , N. C. Santos

One possible formation mechanism for Hot Jupiters is that high-eccentricity gas giants experience tidal interactions with their host star that cause them to lose orbital energy and migrate inwards. We study these types of tidal interactions…

Earth and Planetary Astrophysics · Physics 2023-09-08 Zoë L. de Beurs , Julien de Wit , Alexander Venner , David Berardo , Jared Bryan , Joshua N. Winn , Benjamin J. Fulton , Andrew W. Howard

In this work, we present a transit timing variation analysis for 20 hot Jupiter systems, which we interpret with theoretical tidal dissipation models. For the majority of the sample, we conclude that a constant orbital period model…

Theory suggests that the orbits of some close-in giant planets should decay due to tidal interactions with their host stars. To date, WASP-12b is the only hot Jupiter reported to have a decaying orbit, at a rate of 29$\pm$2 msec…

Earth and Planetary Astrophysics · Physics 2021-01-27 Jake D. Turner , Andrew Ridden-Harper , Ray Jayawardhana

Hot Jupiters on extremely short-period orbits are expected to be unstable to tidal dissipation and spiral toward their host stars. That is because they transfer the angular momentum of the orbital motion through tidal dissipation into the…

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