Searching for the near infrared counterpart of Proxima c using multi-epoch high contrast SPHERE data at VLT
arXiv:2004.06685 · doi:10.1051/0004-6361/202037594
Abstract
Proxima Centauri is known to host an earth-like planet in its habitable zone; very recently a second candidate planet was proposed based on radial velocities. At quadrature, the expected projected separation of this new candidate is larger than 1 arcsec, making it a potentially interesting target for direct imaging. While difficult, identification of the optical counterpart of this planet would allow detailed characterization of the closest planetary system. We searched for a counterpart in SPHERE images acquired during four years through the SHINE survey. In order to account for the large orbital motion of the planet, we used a method that assumes the circular orbit obtained from radial velocities and exploits the sequence of observations acquired close to quadrature in the orbit. We checked this with a more general approach that considers keplerian motion, K-stacker. We did not obtain a clear detection. The best candidate has S/N=6.1 in the combined image. A statistical test suggests that the probability that this detection is due to random fluctuation of noise is < 1% but this result depends on the assumption that distribution of noise is uniform over the image. The position of this candidate and the orientation of its orbital plane fit well with observations in the ALMA 12m array image. However, the astrometric signal expected from the orbit of the candidate we detected is 3-sigma away from the astrometric motion of Proxima as measured from early Gaia data. This, together with the unexpectedly high flux associated with our direct imaging detection, means we cannot confirm that our candidate is indeed Proxima c. On the other hand, if confirmed, this would be the first observation in imaging of a planet discovered from radial velocities and the second one (after Fomalhaut b) of reflecting circumplanetary material. Further confirmation observations should be done as soon as possible.
14 pages, 5 figures. Accepted for publication on Astronomy and Astrophysics
References in corpus (17)
- A terrestrial planet candidate in a temperate orbit around Proxima Centauri
- Optical Images of an Exosolar Planet 25 Light Years from Earth
- How to Constrain Your M Dwarf: measuring effective temperature, bolometric luminosity, mass, and radius
- Fundamental limitations of high contrast imaging set by small sample statistics
- Proxima's orbit around Alpha Centauri
- Combining high-dispersion spectroscopy (HDS) with high contrast imaging (HCI): Probing rocky planets around our nearest neighbors
- Atmospheric characterization of Proxima b by coupling the Sphere high-contrast imager to the Espresso spectrograph
- Performance of the VLT Planet Finder SPHERE II. Data analysis and Results for IFS in laboratory
- The Space Weather of Proxima Centauri b
- Performance of the VLT Planet Finder SPHERE I. Photometry and astrometry precision with IRDIS and IFS in laboratory
- Dusty outflows in planetary atmospheres: Understanding "super-puffs" and transmission spectra of sub-Neptunes
- The Solar Neighborhood. XXXIV. A Search for Planets Orbiting Nearby M Dwarfs using Astrometry
- ALMA Discovery of Dust Belts Around Proxima Centauri
- Fomalhaut b as a Dust Cloud: Frequent Collisions within the Fomalhaut Disk
- Proxima Centauri reloaded: Unravelling the stellar noise in radial velocities
- Upper limits for Mass and Radius of objects around Proxima Cen from SPHERE/VLT
- The triple system Zeta Aquarii
Cited by in corpus (9)
- A candidate short-period sub-Earth orbiting Proxima Centauri
- Line-by-line velocity measurements, an outlier-resistant method for precision velocimetry
- Constraining particle acceleration in Sgr A* with simultaneous GRAVITY, Spitzer, NuSTAR and Chandra observations
- Imaging low-mass planets within the habitable zone of α Centauri
- Revisiting the space weather environment of Proxima Centauri b
- Confirmation of the Long-Period Planet Orbiting Gliese 411 and the Detection of a New Planet Candidate
- A super-Earth on a close-in orbit around the M1V star GJ 740. A HADES and CARMENES collaboration
- PACOME: Optimal multi-epoch combination of direct imaging observations for joint exoplanet detection and orbit estimation
- A Case Study of Interstellar Material Delivery: α Centauri