English

Optical and Near-Infrared Polarimetry for a Highly Dormant Comet 209P/LINEAR

Earth and Planetary Astrophysics 2015-12-09 v1

Abstract

We conducted an optical and near-infrared polarimetric observation of the highly dormant Jupiter-Family Comet, 209P/LINEAR. Because of its low activity, we were able to determine the linear polarization degrees of the coma dust particles and nucleus independently, that is PnP_n=30.30.9+1.3^{+1.3}_{-0.9}% at α\alpha=92.2^\circ and PnP_n=31.00.7+1.0^{+1.0}_{-0.7}% at α\alpha=99.5^\circ for the nucleus, and PcP_c=28.80.4+0.4^{+0.4}_{-0.4}% at α\alpha=92.2^\circ and 29.60.3+0.3^{+0.3}_{-0.3}% at α\alpha=99.5^\circ for the coma. We detected no significant variation in PP at the phase angle coverage of 92.2^\circ-99.5^\circ, which may imply that the obtained polarization degrees are nearly at maximum in the phase-polarization curves. By fitting with an empirical function, we obtained the maximum values of linear polarization degrees PmaxP_\mathrm{max}=30.8% for the nucleus and PmaxP_\mathrm{max}=29.6% for the dust coma. The PmaxP_\mathrm{max} of the dust coma is consistent with those of dust-rich comets. The low geometric albedo of PvP_v=0.05 was derived from the slope-albedo relationship and was associated with high PmaxP_\mathrm{max}. We examined PmaxP_\mathrm{max}-albedo relations between asteroids and 209P, and found that the so-called Umov law seems to be applicable on this cometary surface.

Keywords

Cite

@article{arxiv.1510.05122,
  title  = {Optical and Near-Infrared Polarimetry for a Highly Dormant Comet 209P/LINEAR},
  author = {Daisuke Kuroda and Masateru Ishiguro and Makoto Watanabe and Hiroshi Akitaya and Jun Takahashi and Sunao Hasegawa and Takahiro Ui and Yuka Kanda and Katsutoshi Takaki and Ryosuke Itoh and Yuki Moritani and Masataka Imai and Shuhei Goda and Yuhei Takagi and Kumiko Morihana and Satoshi Honda and Akira Arai and Hidekazu Hanayama and Takahiro Nagayama and Daisaku Nogami and Yuki Sarugaku and Katsuhiro Murata and Tomoki Morokuma and Yoshihiko Saito and Yumiko Oasa and Kazuhiro Sekiguchi and Jun-ichi Watanabe},
  journal= {arXiv preprint arXiv:1510.05122},
  year   = {2015}
}

Comments

27 pages, 7 figures, accepted on 2015 October 14 for publication in the Astrophysical Journal