Submillimetric spectroscopic observations of volatiles in comet C/2004 Q2 (Machholz)
M. de Val-Borro, P. Hartogh, C. Jarchow, M. Rengel, G. L. Villanueva,, M. K\"uppers, N. Biver, D. Bockel\'ee-Morvan, J. Crovisier

TL;DR
This study used high-resolution submillimeter spectroscopy to measure volatile production rates and isotopic ratios in comet C/2004 Q2 (Machholz), revealing its thermal history and chemical composition relative to other Oort Cloud comets.
Contribution
It provides new measurements of molecular abundances, rotational temperature, and isotopic ratios in comet Machholz using submillimeter observations, enhancing understanding of cometary composition and processing.
Findings
Measured production rates of key volatiles in comet Machholz.
Estimated rotational temperature of methanol at 40 ± 3 K.
Found molecular abundance ratios consistent with previous Oort Cloud comets.
Abstract
We aim to determine the production rates of several parent and product volatiles and the 12C/13C isotopic carbon ratio in the long-period comet C/2004 Q2 (Machholz), which is likely to originate from the Oort Cloud. The line emission from several molecules in the coma was measured with high signal-to-noise ratio in January 2005 at heliocentric distance of 1.2 AU by means of high-resolution spectroscopic observations using the Submillimeter Telescope (SMT). We have obtained production rates of several volatiles (CH3OH, HCN, H13CN, HNC, H2CO, CO and CS) by comparing the observed and simulated line-integrated intensities. Furthermore, multiline observations of the CH3OH (7-6) series allow us to estimate the rotational temperature using the rotation diagram technique. We find that the CH3OH population distribution of the levels sampled by these lines can be described by a rotational…
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