Polarimetry with the Gemini Planet Imager: Methods, Performance at First Light, and the Circumstellar Ring around HR 4796A
Abstract
We present the first results from the polarimetry mode of the Gemini Planet Imager (GPI), which uses a new integral field polarimetry architecture to provide high contrast linear polarimetry with minimal systematic biases between the orthogonal polarizations. We describe the design, data reduction methods, and performance of polarimetry with GPI. Point spread function subtraction via differential polarimetry suppresses unpolarized starlight by a factor of over 100, and provides sensitivity to circumstellar dust reaching the photon noise limit for these observations. In the case of the circumstellar disk around HR 4796A, GPI's advanced adaptive optics system reveals the disk clearly even prior to PSF subtraction. In polarized light, the disk is seen all the way in to its semi-minor axis for the first time. The disk exhibits surprisingly strong asymmetry in polarized intensity, with the west side >9 times brighter than the east side despite the fact that the east side is slightly brighter in total intensity. Based on a synthesis of the total and polarized intensities, we now believe that the west side is closer to us, contrary to most prior interpretations. Forward scattering by relatively large silicate dust particles leads to the strong polarized intensity on the west side, and the ring must be slightly optically thick in order to explain the lower brightness in total intensity there. These findings suggest that the ring is geometrically narrow and dynamically cold, perhaps shepherded by larger bodies in the same manner as Saturn's F ring.
Keywords
Cite
@article{arxiv.1407.2495,
title = {Polarimetry with the Gemini Planet Imager: Methods, Performance at First Light, and the Circumstellar Ring around HR 4796A},
author = {Marshall D. Perrin and Gaspard Duchene and Max Millar-Blanchaer and Michael P. Fitzgerald and James R. Graham and Sloane J. Wiktorowicz and Paul G. Kalas and Bruce Macintosh and Brian Bauman and Andrew Cardwell and Jeffrey Chilcote and Robert J. De Rosa and Daren Dillon and René Doyon and Jennifer Dunn and Donald Gavel and Stephen Goodsell and Markus Hartung and Pascale Hibon and Patrick Ingraham and Daniel Kerley and Quinn Konapacky and James E. Larkin and Jérôme Maire and Franck Marchis and Christian Marois and Tushar Mittal and Katie M. Morzinski and B. R. Oppenheimer and David W. Palmer and Jennifer Patience and Lisa Poyneer and Laurent Pueyo and Fredrik T. Rantakyrö and Naru Sadakuni and Leslie Saddlemyer and Dmitry Savransky and Rémi Soummer and Anand Sivaramakrishnan and Inseok Song and Sandrine Thomas and J. Kent Wallace and Jason J. Wang and Schuyler G. Wolff},
journal= {arXiv preprint arXiv:1407.2495},
year = {2015}
}
Comments
27 pages, 16 figures, submitted to the Astrophysical Journal. A version with full resolution figures is available at http://www.stsci.edu/~mperrin/papers/gpi_polarimetry_and_HR_4796A.pdf