English

The HIP 79977 debris disk in polarized light

Earth and Planetary Astrophysics 2017-11-22 v2 Solar and Stellar Astrophysics

Abstract

We present observations of the known edge-on debris disk around HIP 79977 (HD 146897, F star in Upper Sco, 123 pc), taken with the ZIMPOL differential polarimeter of the SPHERE instrument in the Very Broad Band filter (λc=735\lambda_c=735 nm, Δλ=290\Delta\lambda=290 nm) with a spatial resolution of about 25 mas. We measure the polarization flux along and perpendicular to the disk spine of the highly inclined disk for projected separations between 0.2" (25 AU) and 1.6" (200 AU) and investigate the diagnostic potential of such data with model simulations. The polarized flux contrast ratio for the disk is Fpol/F=(5.5±0.9)104F_{pol}/F_\ast= (5.5 \pm 0.9) 10^{-4}. The surface brightness reaches a maximum of 16.2 mag arcsec2^{-2} at a separation of 0.2"0.5"0.2"-0.5" along the disk spine with a maximum surface brightness contrast of 7.64 mag arcsec2^{-2}. The polarized flux has a minimum near the star <0.2"<0.2" because no or only little polarization is produced by forward or backward scattering in the disk section lying in front of or behind the star. The data are modeled as a circular dust belt with an inclination i=85(±1.5)i=85(\pm 1.5)^\circ and a radius between r0r_0 = 60 AU and 90 AU. The radial density dependence is described by (r/r0)α(r/r_0)^{\alpha} with a steep power law index α=5\alpha=5 inside r0r_0 and a more shallow index α=2.5\alpha=-2.5 outside r0r_0. The scattering asymmetry factor lies between gg = 0.2 and 0.6 adopting a scattering angle-dependence for the fractional polarization as for Rayleigh scattering. Our data are qualitatively very similar to the case of AU Mic and they confirm that edge-on debris disks have a polarization minimum at a position near the star and a maximum near the projected separation of the main debris belt. The comparison of the polarized flux contrast ratio Fpol/FF_{pol}/F_{\ast} with the fractional infrared excess provides strong constraints on the scattering albedo of the dust.

Keywords

Cite

@article{arxiv.1709.00417,
  title  = {The HIP 79977 debris disk in polarized light},
  author = {N. Engler and H. M. Schmid and Ch. Thalmann and A. Boccaletti and A. Bazzon and A. Baruffolo and J. L. Beuzit and R. Claudi and A. Costille and S. Desidera and K. Dohlen and C. Dominik and M. Feldt and T. Fusco and C. Ginski and D. Gisler and J. H. Girard and R. Gratton and T. Henning and N. Hubin and M. Janson and M. Kasper and Q. Kral and M. Langlois and E. Lagadec and F. Ménard and M. R. Meyer and J. Milli and D. Mouillet and J. Olofsson and A. Pavlov and J. Pragt and P. Puget and S. P. Quanz and R. Roelfsema and B. Salasnich and R. Siebenmorgen and E. Sissa and M. Suarez and J. Szulagyi and M. Turatto and S. Udry and F. Wildi},
  journal= {arXiv preprint arXiv:1709.00417},
  year   = {2017}
}

Comments

Corrected typos, changed affiliation

R2 v1 2026-06-22T21:30:42.536Z