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Discovery of a warm, dusty giant planet around HIP 65426

Gael Chauvin, +138 more
- 01 Sep 2017 - 
- Vol. 605
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TLDR
In this article, the authors used the IRDIS dual-band imager and the IFS integral field spectrograph of SPHERE to acquire high-contrast coronagraphic differential near-infrared images and spectra of the young A2 star HIP.
Abstract
Aims. The SHINE program is a high-contrast near-infrared survey of 600 young, nearby stars aimed at searching for and characterizing new planetary systems using VLT/SPHERE’s unprecedented high-contrast and high-angular-resolution imaging capabilities. It is also intended to place statistical constraints on the rate, mass and orbital distributions of the giant planet population at large orbits as a function of the stellar host mass and age to test planet-formation theories. Methods. We used the IRDIS dual-band imager and the IFS integral field spectrograph of SPHERE to acquire high-contrast coronagraphic differential near-infrared images and spectra of the young A2 star HIP 65426. It is a member of the ~17 Myr old Lower Centaurus-Crux association. Results. At a separation of 830 mas (92 au projected) from the star, we detect a faint red companion. Multi-epoch observations confirm that it shares common proper motion with HIP 65426. Spectro-photometric measurements extracted with IFS and IRDIS between 0.95 and 2.2 μm indicate a warm, dusty atmosphere characteristic of young low-surface-gravity L5-L7 dwarfs. Hot-start evolutionary models predict a luminosity consistent with a 6–12 MJup, Teff = 1300–1600 K and R = 1.5 ± 0.1 RJup giant planet. Finally, the comparison with Exo-REM and PHOENIX BT-Settl synthetic atmosphere models gives consistent effective temperatures but with slightly higher surface gravity solutions of log (g) = 4.0–5.0 with smaller radii (1.0–1.3 RJup). Conclusions. Given its physical and spectral properties, HIP 65426 b occupies a rather unique placement in terms of age, mass, and spectral-type among the currently known imaged planets. It represents a particularly interesting case to study the presence of clouds as a function of particle size, composition, and location in the atmosphere, to search for signatures of non-equilibrium chemistry, and finally to test the theory of planet formation and evolution.

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Exoplanet detection in angular differential imaging by statistical learning of the nonstationary patch covariances - The PACO algorithm

TL;DR: In this article, a nonstationary multi-variate Gaussian model of the background is learned to estimate the flux of the (potential) exoplanets, and the decision in favor of the presence or absence of an exoplanet is performed by a binary hypothesis test.
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A Search for L/T Transition Dwarfs With Pan-STARRS1 and WISE. II. L/T Transition Atmospheres and Young Discoveries

TL;DR: In this paper, the authors presented 130 ultracool dwarf discoveries with estimated distances of roughly 9-130$ pc, including 21 that were independently discovered by other authors and 3 that were previously identified as photometric candidates.
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First direct detection of a polarized companion outside a resolved circumbinary disk around CS Chamaeleonis

TL;DR: In this article, the authors investigated the circumstellar environment of the spectroscopic binary T T Tauri star CS Cha and found a smooth, low inclination disk with an outer radius of similar to 55 au (at 165 pc).
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