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A Deep Search for Emission From "Rock Comet" (3200) Phaethon At 1 AU

Earth and Planetary Astrophysics 2020-11-23 v1

Abstract

We present a deep imaging and spectroscopic search for emission from (3200) Phaethon, a large near-Earth asteroid that appears to be the parent of the strong Geminid meteoroid stream, using the 4.3 m Lowell Discovery Telescope. Observations were conducted on 2017 December 14-18 when Phaethon passed only 0.07 au from the Earth. We determine the 3σ3\sigma upper level of dust and CN production rates to be 0.007-0.2 kg s1\mathrm{kg~s^{-1}} and 2.3×1022 molecule s12.3\times10^{22}~\mathrm{molecule~s^{-1}} through narrowband imaging. A search in broadband images taken through the SDSS rr' filter shows no 100-m-class fragments in Phaethon's vicinity. A deeper, but star-contaminated search also shows no sign of fragments down to 15 m. Optical spectroscopy of Phaethon and comet C/2017 O1 (ASASSN) as comparison confirms the absence of cometary emission lines from Phaethon and yields 3σ3\sigma upper levels of CN, C2_2 and C3_3 of 1024\sim10^{24}-1025molecule s110^{25} \mathrm{molecule~s^{-1}}, 2 orders of magnitude higher than the CN constraint placed by narrowband imaging, due to the much narrower on-sky aperture of the spectrographic slit. We show that narrowband imaging could provide an efficient way to look for weak gas emission from near-extinct bodies near the Earth, though these observations require careful interpretation. Assuming Phaethon's behavior is unchanged, our analysis shows that the DESTINY+^+ mission, currently planning to explore Phaethon in 2026, may not be able to directly detect a gas coma.

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Cite

@article{arxiv.2011.10184,
  title  = {A Deep Search for Emission From "Rock Comet" (3200) Phaethon At 1 AU},
  author = {Quanzhi Ye and Matthew M. Knight and Michael S. P. Kelley and Nicholas A. Moskovitz and Annika Gustafsson and David Schleicher},
  journal= {arXiv preprint arXiv:2011.10184},
  year   = {2020}
}

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