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Open AccessJournal ArticleDOI

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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Journal ArticleDOI

Discovery of a planetary-mass companion within the gap of the transition disk around PDS 70

Miriam Keppler, +141 more
TL;DR: In this article, the authors detect a point source within the gap of the transition disk at about 195 mas (~22 au) projected separation and detect a signal from an inner disk component.
Journal ArticleDOI

SPHERE: the exoplanet imager for the Very Large Telescope

Jean-Luc Beuzit, +110 more
TL;DR: The Spectro-Polarimetic High contrast imager for Exoplanets REsearch (SPHERE) was designed and built for the ESO Very Large Telescope (VLT) in Chile as mentioned in this paper.
Journal ArticleDOI

SPHERE: the exoplanet imager for the Very Large Telescope

Jean-Luc Beuzit, +120 more
TL;DR: The Spectro-Polarimetic High contrast imager for Exoplanets REsearch (SPHERE) was designed and built for the ESO Very Large Telescope (VLT) in Chile as discussed by the authors.
Journal ArticleDOI

Characterization of exoplanets from their formation III: The statistics of planetary luminosities

TL;DR: In this article, an extensive study of the statistics of planetary luminosities during both formation and evolution is presented, which can be compared with individual directly imaged extrasolar (proto)planets and with statistical results from surveys.
Journal ArticleDOI

Astrometric and photometric accuracies in high contrast imaging : The SPHERE speckle calibration tool (SpeCal)

TL;DR: The SPHERE consortium developed a dedicated piece of software to process the data as mentioned in this paper, which corrects for instrumental artifacts and uses the speckle calibration tool to minimize the stellar light halo that prevents us from detecting faint sources like exoplanets or circumstellar disks.
References
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Journal ArticleDOI

First light of the VLT planet finder SPHERE - III. New spectrophotometry and astrometry of the HR 8799 exoplanetary system

Alice Zurlo, +92 more
TL;DR: In this article, the spectral energy distribution (SED) of the A-type gas giants surrounding HR-8799 was obtained using the infrared dual-band imager and spectrograph (IRDIS) subsystem.
Journal ArticleDOI

2MASSJ035523.51+113337.4: A Young, Dusty, Nearby, Isolated Brown Dwarf Resembling A Giant Exoplanet

TL;DR: In this article, the authors present parallax and proper motion measurements, near-infrared spectra, and WISE photometry for the low surface gravity L5gamma dwarf 2MASSJ035523.37+113343.7 (2M0355).
Journal ArticleDOI

First light of the VLT planet finder SPHERE IV : Physical and chemical properties of the planets around HR8799

M. Bonnefoy, +77 more
TL;DR: In this paper, the spectral energy distribution (SED) of HR8799d and e was compared to field dwarfs and young companions, and three sets of atmospheric models (BT-SETTL14, Cloud-AE60, Exo-REM) were used.
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