Improved companion mass limits for Sirius A with thermal infrared coronagraphy using a vector-apodizing phase plate and time-domain starlight-subtraction techniques
arXiv:2303.05559 · doi:10.3847/1538-3881/acbd4b
Abstract
We use observations with the infrared-optimized MagAO system and Clio camera in 3.9 m light to place stringent mass constraints on possible undetected companions to Sirius A. We suppress the light from Sirius A by imaging it through a grating vector-apodizing phase plate coronagraph with 180-degree dark region (gvAPP-180). To remove residual starlight in post-processing, we apply a time-domain principal-components-analysis-based algorithm we call PCA-Temporal (PCAT), which uses eigen-time-series rather than eigen-images to subtract starlight. By casting the problem in terms of eigen-time-series, we reduce the computational cost of post-processing the data, enabling the use of the fully sampled dataset for improved contrast at small separations. We also discuss the impact of retaining fine temporal sampling of the data on final contrast limits. We achieve post-processed contrast limits of to outside of 0.75 arcsec which correspond to planet masses of 2.6 to 8.0 . These are combined with values from the recent literature of high-contrast imaging observations of Sirius to synthesize an overall completeness fraction as a function of mass and separation. After synthesizing these recent studies and our results, the final completeness analysis rules out 99% of planets from 2.5-7 AU.
19 pages, 22 figures, accepted to AJ
References in corpus (13)
- Estimating distances from parallaxes. V: Geometric and photogeometric distances to 1.47 billion stars in Gaia Early Data Release 3
- The Gemini Planet Imager Exoplanet Survey: Giant Planet and Brown Dwarf Demographics From 10-100 AU
- Fundamental limitations of high contrast imaging set by small sample statistics
- Retired A Stars and Their Companions: Exoplanets Orbiting Three Intermediate-Mass Subgiants
- Techniques and Review of Absolute Flux Calibration from the Ultraviolet to the Mid-Infrared
- First On-Sky High Contrast Imaging with an Apodizing Phase Plate
- On-sky performance analysis of the vector Apodizing Phase Plate coronagraph on MagAO/Clio2
- TRAP: A temporal systematics model for improved direct detection of exoplanets at small angular separations
- High contrast imaging at 10 microns, a search for exoplanets around: Eps Indi A, Eps Eri, Tau Ceti, Sirius A and Sirius B
- The vector-apodizing phase plate coronagraph: design, current performance, and future development
- High-contrast observations of brown dwarf companion HR 2562 B with the vector Apodizing Phase Plate coronagraph
- Direct imaging of exoplanets in the habitable zone with adaptive optics
- High contrast imaging for the enhanced resolution imager and spectrometer (ERIS)
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