Disk Wind Feedback from High-mass Protostars. III. Synthetic CO Line Emission

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Main Authors: Xu, Duo, Tan, Jonathan C., Staff, Jan E., Ramsey, Jon P., Zhang, Yichen, Tanaka, Kei E.
Format: Preprint
Published: 2023
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author Xu, Duo
Tan, Jonathan C.
Staff, Jan E.
Ramsey, Jon P.
Zhang, Yichen
Tanaka, Kei E.
author_facet Xu, Duo
Tan, Jonathan C.
Staff, Jan E.
Ramsey, Jon P.
Zhang, Yichen
Tanaka, Kei E.
contents To test theoretical models of massive star formation it is important to compare their predictions with observed systems. To this end, we conduct CO molecular line radiative transfer post-processing of 3D magneto-hydrodynamic (MHD) simulations of various stages in the evolutionary sequence of a massive protostellar core, including its infall envelope and disk wind outflow. Synthetic position-position-velocity (PPV) cubes of various transitions of CO, 13CO, and C18O emission are generated. We also carry out simulated Atacama Large Millimeter/submillimeter Array (ALMA) observations of this emission. We compare the mass, momentum and kinetic energy estimates obtained from molecular lines to the true values, finding that the mass and momentum estimates can have uncertainties of up to a factor of four. However, the kinetic energy estimated from molecular lines is more significantly underestimated. Additionally, we compare the mass outflow rate and momentum outflow rate obtained from the synthetic spectra with the true values. Finally, we compare the synthetic spectra with real examples of ALMA-observed protostars and determine the best fitting protostellar masses and outflow inclination angles. We then calculate the mass outflow rate and momentum outflow rate for these sources, finding that both rates agree with theoretical protostellar evolutionary tracks.
format Preprint
id arxiv_https___arxiv_org_abs_2309_03868
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Disk Wind Feedback from High-mass Protostars. III. Synthetic CO Line Emission
Xu, Duo
Tan, Jonathan C.
Staff, Jan E.
Ramsey, Jon P.
Zhang, Yichen
Tanaka, Kei E.
Astrophysics of Galaxies
To test theoretical models of massive star formation it is important to compare their predictions with observed systems. To this end, we conduct CO molecular line radiative transfer post-processing of 3D magneto-hydrodynamic (MHD) simulations of various stages in the evolutionary sequence of a massive protostellar core, including its infall envelope and disk wind outflow. Synthetic position-position-velocity (PPV) cubes of various transitions of CO, 13CO, and C18O emission are generated. We also carry out simulated Atacama Large Millimeter/submillimeter Array (ALMA) observations of this emission. We compare the mass, momentum and kinetic energy estimates obtained from molecular lines to the true values, finding that the mass and momentum estimates can have uncertainties of up to a factor of four. However, the kinetic energy estimated from molecular lines is more significantly underestimated. Additionally, we compare the mass outflow rate and momentum outflow rate obtained from the synthetic spectra with the true values. Finally, we compare the synthetic spectra with real examples of ALMA-observed protostars and determine the best fitting protostellar masses and outflow inclination angles. We then calculate the mass outflow rate and momentum outflow rate for these sources, finding that both rates agree with theoretical protostellar evolutionary tracks.
title Disk Wind Feedback from High-mass Protostars. III. Synthetic CO Line Emission
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2309.03868