English

WIRC+Pol: a low-resolution near-infrared spectropolarimeter

Instrumentation and Methods for Astrophysics 2019-01-09 v2

Abstract

WIRC+Pol is a newly commissioned low-resolution (R~100), near-infrared (J and H band) spectropolarimetry mode of the Wide-field InfraRed Camera (WIRC) on the 200-inch Hale Telescope at Palomar Observatory. The instrument utilizes a novel polarimeter design based on a quarter-wave plate and a polarization grating (PG), which provides full linear polarization measurements (Stokes I, Q, and U) in one exposure. The PG also has high transmission across the J and H bands. The instrument is situated at the prime focus of an equatorially mounted telescope. As a result, the system only has one reflection in the light path, providing minimal telescope induced polarization. A data reduction pipeline has been developed for WIRC+Pol to produce linear polarization measurements from observations. WIRC+Pol has been on-sky since February 2017. Results from the first year commissioning data show that the instrument has a high dispersion efficiency as expected from the polarization grating. We demonstrate the polarimetric stability of the instrument with RMS variation at 0.2% level over 30 minutes for a bright standard star (J = 8.7). While the spectral extraction is photon noise limited, polarization calibration between sources remain limited by systematics, likely related to gravity dependent pointing effects. We discuss instrumental systematics we have uncovered in the data, their potential causes, along with calibrations that are necessary to eliminate them. We describe a modulator upgrade that will eliminate the slowly varying systematics and provide polarimetric accuracy better than 0.1%.

Keywords

Cite

@article{arxiv.1811.03138,
  title  = {WIRC+Pol: a low-resolution near-infrared spectropolarimeter},
  author = {Samaporn Tinyanont and Maxwell A. Millar-Blanchaer and Ricky Nilsson and Dimitri Mawet and Heather Knutson and Tiffany Kataria and Gautam Vasisht and Charles Henderson and Keith Matthews and Eugene Serabyn and Jennifer W. Milburn and David Hale and Roger Smith and Shreyas Vissapragada and Louis D. Santos and Jason Kekas and Michael J. Escuti},
  journal= {arXiv preprint arXiv:1811.03138},
  year   = {2019}
}

Comments

Published in PASP