2008/06/22 by Jana Pittichova, Jana Pittichová, Charles E. Woodward +2 · 39 citations
Engineering · Physics and Astronomy · #Astro and Planetary Science #Brightness #Coma (optics) #Comet #Comet dust #Geometric albedo #Infrared #Photometry (optics) #Planetary Science and Exploration #Spacecraft Dynamics and Control #Spitzer Space Telescope #Surface brightness #astro-ph
paper · pdf · doi:10.1088/0004-6256/136/3/1127
published in The Astronomical Journal 136(3), 1127-1136 (Institute of Physics) · Astronomical Journal Accepted, 20 pages text and references, 3 tables, and 8 figures
arxiv created 2008/06/22 · openalex publication_date 2008/08/11 · arxiv updated 2009/12/01 · openalex created_date 2016/06/24 · openalex updated_date 2026/08/05
We present ground-based optical and Spitzer Space Telescope infrared (IR) imaging observations of the ecliptic (Jupiter-family) comet 21P/Giacobini-Zinner, the parent body of the Draconid meteor stream, during its 2005 apparition. The onset of nucleus activity occurred at a pre-perihelion heliocentric distance, r h ≃ 3.80 AU, while post-perihelion 21P was dusty (peak Af ρ = 131 cm −1 ) and active out to heliocentric distances ≳3.3 AU following a logarithmic slope with r h of −2.04. Coma colors, V − R = 0.524 ± 0.003, R − I = 0.487 ± 0.004, are redder than solar, yet comparable to colors derived for other Jupiter-family comets. A nucleus radius of 1.82 ± 0.05 km is derived from photometry at quiescence. Spitzer images post-perihelion exhibit an extensive coma with a prominent dust tail, where excess emission (over the dust continuum) in the 4.5 μm Infrared Array Camera (IRAC) image arises from volatile gaseous CO and/or CO 2 . No dust trail was detected (3σ surface brightness upper limit of 0.3 MJy sr −1 pixel −1 ) along the projected velocity vector of comet 21P in the MIPS 24 μm image suggesting that the number density of trail particles is ≲7 × 10 −11 m −3 . The bolometric albedo of 21P derived from the contemporaneous optical and Spitzer observations is A (θ = 22°) = 0.11, slightly lower than values derived for other comets at the same phase angle.