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We present the discovery of a transiting exoplanet candidate in the K2 Field-1 with an orbital period of 9.1457 hr: K2-22b. The highly variable transit depths, ranging from $\sim$0\% to 1.3\%, are suggestive of a planet that is…

We present 45 ground-based photometric observations of the K2-22 system collected between December 2016 and May 2017, which we use to investigate the evolution of the transit of the disintegrating planet K2-22b. Last observed in early 2015,…

The disintegrating ultra-short period rocky exoplanet K2-22b periodically emits dusty clouds in a dynamically chaotic process resulting in a variable transit depth from 0-1.3%. The effluents that sublimate off the surface and condense out…

Disintegrating planets allow for the unique opportunity to study the composition of the interiors of small, hot, rocky exoplanets because the interior is evaporating and that material is condensing into dust, which is being blown away and…

Earth and Planetary Astrophysics · Physics 2018-10-17 Eva H. L. Bodman , Jason T. Wright , Steven J. Desch , Carey M. Lisse

The disintegrating planet candidate K2-22 b shows periodic and stochastic transits best explained by an escaping debris cloud. However, the mechanism that creates the debris cloud is unknown. The grain size of the debris as well as its…

Earth and Planetary Astrophysics · Physics 2021-07-21 Everett Schlawin , Kate Y. L. Su , Terry Herter , Andrew Ridden-Harper , Daniel Apai

[Abridged] Aims. We searched for circumplanetary sodium and ionized calcium gas around the disintegrating rocky exoplanet K2-22 b to constrain its gas-loss and sublimation processes. Methods. We observed four transits of K2-22 b with…

Earth and Planetary Astrophysics · Physics 2019-08-14 A. R. Ridden-Harper , I. A. G. Snellen , C. U. Keller , P. Mollière

Context. Kepler observations have revealed a class of short period exoplanets, of which Kepler-1520 b is the prototype, which have comet-like dust tails thought to be the result of small, rocky planets losing mass. The shape and…

Earth and Planetary Astrophysics · Physics 2018-10-24 A. R. Ridden-Harper , C. U. Keller , M. Min , R. van Lieshout , I. A. G. Snellen

Catastrophically evaporating rocky planets provide a unique opportunity to study the composition of small planets. The surface composition of these planets can be constrained via modelling their comet-like tails of dust. In this work, we…

Earth and Planetary Astrophysics · Physics 2024-01-10 Beatriz Campos Estrada , James E. Owen , Marija R. Jankovic , Anna Wilson , Christiane Helling

We present simultaneous multi-color optical photometry using ULTRACAM of the transiting exoplanet KIC 12557548 b (also known as KIC 1255 b). This reveals, for the first time, the color dependence of the transit depth. Our g and z transits…

Earth and Planetary Astrophysics · Physics 2015-02-18 Jakub J. Bochinski , Carole A. Haswell , Tom R. Marsh , Vikram S. Dhillon , Stuart P. Littlefair

Spectroscopic transit detection of constituents in winds from "evaporating" planets on close-in transiting orbits could provide desperately needed information on the composition, formation, and orbital evolution of such objects. We obtained…

Earth and Planetary Astrophysics · Physics 2019-03-27 Eric Gaidos , Teruyuki Hirano , Megan Ansdell

Violent variation of transit depths and an ingress-egress asymmetry of the transit light curve discovered in KIC 12557548 have been interpreted as evidences of a catastrophic evaporation of atmosphere with dust (M_p gtrsim 1 M_oplus/Gyr)…

Earth and Planetary Astrophysics · Physics 2013-10-29 Hajime Kawahara , Teruyuki Hirano , Kenji Kurosaki , Yuichi Ito , Masahiro Ikoma

The phenomenon of transit depth variability offers a pathway through which processes such as exoplanet atmospheric activity and orbital dynamics can be studied. In this work we conduct a blind search for transit depth variations among 330…

Earth and Planetary Astrophysics · Physics 2023-11-07 Gavin Wang , Néstor Espinoza

While various indirect methods are used to detect exoplanets, one of the most effective and accurate methods is the transit method, which measures the brightness of a given star for periodic dips when an exoplanet is passing in front of the…

Kepler planet candidate KOI-2700b (KIC 8639908b) with an orbital period of 21.84 hours exhibits a distinctly asymmetric transit profile, likely indicative of the emission of dusty effluents, and reminiscent of KIC 1255b. The host star has…

Earth and Planetary Astrophysics · Physics 2015-06-18 S. Rappaport , T. Barclay , J. DeVore , J. Rowe. , R. Sanchis-Ojeda , M. Still

Most planetary discoveries with the K2 and TESS missions are restricted to short periods because of the limited duration of observation. However, the re-observation of sky area allows for the detection of longer period planets. We describe…

Earth and Planetary Astrophysics · Physics 2020-02-19 S. Dholakia , S. Dholakia , Andrew W. Mayo , Courtney D. Dressing

Context. The Kepler object KIC 12557548 b is peculiar. It exhibits transit-like features every 15.7 hours that vary in depth between 0.2% and 1.2%. Rappaport et al. (2012) explain the observations in terms of a disintegrating, rocky planet…

Earth and Planetary Astrophysics · Physics 2012-08-17 M. Brogi , C. U. Keller , M. de Juan Ovelar , M. A. Kenworthy , R. J. de Kok , M. Min , I. A. G. Snellen

K2-19 (EPIC201505350) is an interesting planetary system in which two transiting planets with radii ~ 7 $R_{Earth}$ (inner planet b) and ~ 4 $R_{Earth}$ (outer planet c) have orbits that are nearly in a 3:2 mean-motion resonance. Here, we…

We report the first ground-based transit observation of K2-3d, a 1.5 R_Earth planet supposedly within the habitable zone around a bright M-dwarf host star, using the Okayama 188 cm telescope and the multi(grz)-band imager MuSCAT. Although…

Earth and Planetary Astrophysics · Physics 2016-11-28 Akihiko Fukui , John Livingston , Norio Narita , Teruyuki Hirano , Masahiro Onitsuka , Tsuguru Ryu , Nobuhiko Kusakabe

Recently, two exoplanet candidates have been discovered, KIC 12557548b and KOI-2700b, whose transit profiles show evidence for a comet-like tail of dust trailing the planet, thought to be fed by the evaporation of the planet's surface. We…

Earth and Planetary Astrophysics · Physics 2014-12-03 R. van Lieshout , M. Min , C. Dominik
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