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Evolution of H2O, CO, and CO2 Production in Comet C/2009 P1 Garradd During the 2011-2012 Apparition

Authors :
Adam J Mckay
Anita L Cochran
Michael A Disanti
Geronimo Villanueva
Neil Dello Russo
Ronald J Vervack, Jr
Jeffrey P Morgenthaler
Walter M Harris
Nancy J Chanover
Source :
Icarus. 250
Publication Year :
2015
Publisher :
United States: NASA Center for Aerospace Information (CASI), 2015.

Abstract

We present analysis of high spectral resolution NIR spectra of CO and H2O in Comet C/2009 P1 (Garradd) taken during its 2011-2012 apparition with the CSHELL instrument on NASA's Infrared Telescope Facility (IRTF). We also present analysis of observations of atomic oxygen in Comet Garradd obtained with the ARCES echelle spectrometer mounted on the ARC 3.5-m telescope at Apache Point Observatory and the Tull Coude spectrograph on the Harlan J. Smith 2.7-m telescope at McDonald Observatory. The observations of atomic oxygen serve as a proxy for H2O and CO2. We confirm the high CO abundance in Comet Garradd and the asymmetry in the CO/H2O ratio with respect to perihelion reported by previous studies. From the oxygen observations, we infer that the CO2/H2O ratio decreased as the comet moved towards the Sun, which is expected based on current sublimation models. We also infer that the CO2/H2O ratio was higher pre-perihelion than post-perihelion. We observe evidence for the icy grain source of H2O reported by several studies pre-perihelion, and argue that this source is significantly less abundant post-perihelion. Since H2O, CO2, and CO are the primary ices in comets, they drive the activity. We use our measurements of these important volatiles in an attempt to explain the evolution of Garradd's activity over the apparition.

Subjects

Subjects :
Astronomy

Details

Language :
English
ISSN :
00191035
Volume :
250
Database :
NASA Technical Reports
Journal :
Icarus
Notes :
NNX11AO03H, , NNX08AE38A, , NNX14AC98A, , NNX08A052G
Publication Type :
Report
Accession number :
edsnas.20150011105
Document Type :
Report
Full Text :
https://doi.org/10.1016/j.icarus.2014.12.023