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Main Authors: Wright, Melvyn, McGuire, Brett A., Ginsburg, Adam, Hirota, Tomoya, Bally, John, Hwangbo, Ryan, Bhadra, T. Dex, John, Chris, Dave, Rishabh
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2408.05114
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_version_ 1866913463250452480
author Wright, Melvyn
McGuire, Brett A.
Ginsburg, Adam
Hirota, Tomoya
Bally, John
Hwangbo, Ryan
Bhadra, T. Dex
John, Chris
Dave, Rishabh
author_facet Wright, Melvyn
McGuire, Brett A.
Ginsburg, Adam
Hirota, Tomoya
Bally, John
Hwangbo, Ryan
Bhadra, T. Dex
John, Chris
Dave, Rishabh
contents We present ALMA observations of SiO, SiS, H$_2$O , NaCl, and SO line emission at ~30 to 50 mas resolution. These images map the molecular outflow and disk of Orion Source I (SrcI) on ~12 to 20 AU scales. Our observations show that the flow of material around SrcI creates a turbulent boundary layer in the outflow from SrcI which may dissipate angular momentum in the rotating molecular outflow into the surrounding medium. Additionally, the data suggests that the proper motion of SrcI may have a significant effect on the structure and evolution of SrcI and its molecular outflow. As the motion of SrcI funnels material between the disk and the outflow, some material may be entrained into the outflow and accrete onto the disk, creating shocks which excite the NaCl close to the disk surface.
format Preprint
id arxiv_https___arxiv_org_abs_2408_05114
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Accretion and Outflow in Orion-KL Source I
Wright, Melvyn
McGuire, Brett A.
Ginsburg, Adam
Hirota, Tomoya
Bally, John
Hwangbo, Ryan
Bhadra, T. Dex
John, Chris
Dave, Rishabh
Astrophysics of Galaxies
We present ALMA observations of SiO, SiS, H$_2$O , NaCl, and SO line emission at ~30 to 50 mas resolution. These images map the molecular outflow and disk of Orion Source I (SrcI) on ~12 to 20 AU scales. Our observations show that the flow of material around SrcI creates a turbulent boundary layer in the outflow from SrcI which may dissipate angular momentum in the rotating molecular outflow into the surrounding medium. Additionally, the data suggests that the proper motion of SrcI may have a significant effect on the structure and evolution of SrcI and its molecular outflow. As the motion of SrcI funnels material between the disk and the outflow, some material may be entrained into the outflow and accrete onto the disk, creating shocks which excite the NaCl close to the disk surface.
title Accretion and Outflow in Orion-KL Source I
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2408.05114