Detection of Dimethyl Ether in the Central Region of the MWC 480 Protoplanetary Disk

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Hauptverfasser: Yamato, Yoshihide, Aikawa, Yuri, Guzmán, Viviana V., Furuya, Kenji, Notsu, Shota, Cataldi, Gianni, Öberg, Karin I., Qi, Chunhua, Law, Charles J., Huang, Jane, Teague, Richard, Gal, Romane Le
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Veröffentlicht: 2024
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author Yamato, Yoshihide
Aikawa, Yuri
Guzmán, Viviana V.
Furuya, Kenji
Notsu, Shota
Cataldi, Gianni
Öberg, Karin I.
Qi, Chunhua
Law, Charles J.
Huang, Jane
Teague, Richard
Gal, Romane Le
author_facet Yamato, Yoshihide
Aikawa, Yuri
Guzmán, Viviana V.
Furuya, Kenji
Notsu, Shota
Cataldi, Gianni
Öberg, Karin I.
Qi, Chunhua
Law, Charles J.
Huang, Jane
Teague, Richard
Gal, Romane Le
contents Characterizing the chemistry of complex organic molecules (COMs) at the epoch of planet formation provides insights into the chemical evolution of the interstellar medium (ISM) and the origin of organic materials in our Solar System. We report a detection of dimethyl ether (CH$_3$OCH$_3$) in the disk around the Herbig Ae star MWC 480 with the sensitive Atacama Large Millimeter/submillimeter Array observations. This is the first detection of CH$_3$OCH$_3$ in a non-transitional Class II disk. The spatially unresolved, compact (${\lesssim}$25 au in radius) nature, the broad line width ($\sim$30 km s$^{-1}$), and the high excitation temperature (${\sim}$200 K) indicate sublimation of COMs in the warm inner disk. Despite the detection of CH$_3$OCH$_3$, methanol (CH$_3$OH), the most abundant COM in the ISM, has not been detected, from which we constrain the column density ratio of CH$_3$OCH$_3$/CH$_3$OH ${\gtrsim}$7. This high ratio may indicate the reprocessing of COMs during the disk phase, as well as the effect of the physical structure in the inner disk. We also find that this ratio is higher than in COM-rich transition disks recently discovered. This may indicate that, in the full disk of MWC 480, COMs have experienced substantial chemical reprocessing in the innermost region, while the COM emission in the transition disks predominantly traces the inherited ice sublimating at the dust cavity edge located at larger radii (${\gtrsim}$20 au).
format Preprint
id arxiv_https___arxiv_org_abs_2407_21518
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Detection of Dimethyl Ether in the Central Region of the MWC 480 Protoplanetary Disk
Yamato, Yoshihide
Aikawa, Yuri
Guzmán, Viviana V.
Furuya, Kenji
Notsu, Shota
Cataldi, Gianni
Öberg, Karin I.
Qi, Chunhua
Law, Charles J.
Huang, Jane
Teague, Richard
Gal, Romane Le
Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
Characterizing the chemistry of complex organic molecules (COMs) at the epoch of planet formation provides insights into the chemical evolution of the interstellar medium (ISM) and the origin of organic materials in our Solar System. We report a detection of dimethyl ether (CH$_3$OCH$_3$) in the disk around the Herbig Ae star MWC 480 with the sensitive Atacama Large Millimeter/submillimeter Array observations. This is the first detection of CH$_3$OCH$_3$ in a non-transitional Class II disk. The spatially unresolved, compact (${\lesssim}$25 au in radius) nature, the broad line width ($\sim$30 km s$^{-1}$), and the high excitation temperature (${\sim}$200 K) indicate sublimation of COMs in the warm inner disk. Despite the detection of CH$_3$OCH$_3$, methanol (CH$_3$OH), the most abundant COM in the ISM, has not been detected, from which we constrain the column density ratio of CH$_3$OCH$_3$/CH$_3$OH ${\gtrsim}$7. This high ratio may indicate the reprocessing of COMs during the disk phase, as well as the effect of the physical structure in the inner disk. We also find that this ratio is higher than in COM-rich transition disks recently discovered. This may indicate that, in the full disk of MWC 480, COMs have experienced substantial chemical reprocessing in the innermost region, while the COM emission in the transition disks predominantly traces the inherited ice sublimating at the dust cavity edge located at larger radii (${\gtrsim}$20 au).
title Detection of Dimethyl Ether in the Central Region of the MWC 480 Protoplanetary Disk
topic Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2407.21518