Comet 21P/Giacobini–Zinner: Narrowband Photometry of the Prototype of Carbon-chain Depleted Comets at Multiple Apparitions
Abstract We obtained extensive narrowband photoelectric photometry of Comet 21P/Giacobini–Zinner with observations spanning 33 yr. The original data from 1985 were re-reduced and are presented along with data from three additional apparitions, including 2018/19. The original conclusion regarding Gia...
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Published in: | The planetary science journal Vol. 3; no. 6; pp. 143 - 158 |
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Main Author: | |
Format: | Journal Article |
Language: | English |
Published: |
The American Astronomical Society
01-06-2022
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Subjects: | |
Online Access: | Get full text |
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Summary: | Abstract
We obtained extensive narrowband photoelectric photometry of Comet 21P/Giacobini–Zinner with observations spanning 33 yr. The original data from 1985 were re-reduced and are presented along with data from three additional apparitions, including 2018/19. The original conclusion regarding Giacobini–Zinner’s chemical composition remains unchanged, with it having a 4–6× depletion in the carbon-chain molecules C
2
and C
3
and in NH, as compared with both OH and CN. The comet continues to exhibit a large asymmetry in production rates as a function of time and heliocentric distance, with production reaching a peak 3–5 weeks prior to perihelion. All species, including dust, follow the same general production rate curve each apparition, and the carbon-bearing species are always very similar to one another. However, OH and NH each differ in detail from the carbon-bearing species, implying somewhat varied composition between source regions. Longer term, there are only small secular changes among the apparitions before and near perihelion, but larger changes are evident as the comet recedes from the Sun, suggestive of a progressive precession of the rotation axis. |
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Bibliography: | Planetary Science AAS31323 |
ISSN: | 2632-3338 2632-3338 |
DOI: | 10.3847/PSJ/ac6de2 |