English

Multiband Optical Observation of P/2010 A2 Dust Tail

Earth and Planetary Astrophysics 2015-06-03 v1

Abstract

An inner main-belt asteroid, P/2010 A2, was discovered on January 6th, 2010. Based on its orbital elements, it is considered that the asteroid belongs to the Flora collisional family, where S-type asteroids are common, whilst showing a comet-like dust tail. Although analysis of images taken by the Hubble Space Telescope and Rosetta spacecraft suggested that the dust tail resulted from a recent head-on collision between asteroids (Jewitt et al. 2010; Snodgrass et al. 2010), an alternative idea of ice sublimation was suggested based on the morphological fitting of ground-based images (Moreno et al. 2010). Here, we report a multiband observation of P/2010 A2 made on January 2010 with a 105 cm telescope at the Ishigakijima Astronomical Observatory. Three broadband filters, gg', RcR_c, and IcI_c, were employed for the observation. The unique multiband data reveals that the reflectance spectrum of the P/2010 A2 dust tail resembles that of an Sq-type asteroid or that of ordinary chondrites rather than that of an S-type asteroid. Due to the large error of the measurement, the reflectance spectrum also resembles the spectra of C-type asteroids, even though C-type asteroids are uncommon in the Flora family. The reflectances relative to the gg'-band (470 nm) are 1.096±\pm0.046 at the RcR_c-band (650 nm) and 1.131±\pm0.061 at the IcI_c-band (800 nm). We hypothesize that the parent body of P/2010 A2 was originally S-type but was then shattered upon collision into scaterring fresh chondritic particles from the interior, thus forming the dust tail.

Keywords

Cite

@article{arxiv.1201.3029,
  title  = {Multiband Optical Observation of P/2010 A2 Dust Tail},
  author = {Junhan Kim and Masateru Ishiguro and Hidekazu Hanayama and Sunao Hasegawa and Fumihiko Usui and Kenshi Yanagisawa and Yuki Sarugaku and Jun-ichi Watanabe and Michitoshi Yoshida},
  journal= {arXiv preprint arXiv:1201.3029},
  year   = {2015}
}

Comments

4 figures, 1 table, accepted for publication in ApJL

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