Resolving the chemical substructure of Orion-KL
S. Feng, H. Beuther, T. Henning, D. Semenov, Aina. Palau, E. A. C., Mills

TL;DR
This study provides a detailed chemical and spatial analysis of Orion-KL, revealing complex organic molecules, chemical segregation, shock-related components, and temperature gradients, enhancing understanding of high-mass star-forming environments.
Contribution
First combined interferometric and single-dish observations of Orion-KL with detailed spatial chemical mapping at 1200 AU resolution.
Findings
Identification of complex organic molecules like CH3COCH3 and CH3CH2OH.
Chemical segregation between hot core and compact ridge regions.
Detection of a second velocity component linked to shock activity.
Abstract
The Kleinmann-Low nebula in Orion (Orion-KL) is the nearest example of a high-mass star-forming environment. For the first time, we complemented 1.3 mm Submillimeter Array (SMA) interferometric line survey with IRAM 30 m single-dish observations of the Orion-KL region. Covering a 4 GHz bandwidth in total, this survey contains over 160 emission lines from 20 species (25 isotopologues), including 11 complex organic molecules (COMs). At a spatial resolution of 1200 AU, the continuum substructures are resolved. Extracting the spectra from individual substructures and providing the intensity-integrated distribution map for each species, we studied the small-scale chemical variations in this region. Our main results are: (1) We identify lines from the low-abundance COMs CH3COCH3 and CH3CH2OH, as well as tentatively detect CH3CHO and long carbon-chains C6H and HC7N. (2) We find that while…
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Taxonomy
TopicsSilicone and Siloxane Chemistry · Advanced ceramic materials synthesis · Inorganic Chemistry and Materials
