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ALMA Survey of Orion Planck Galactic Cold Clumps (ALMASOP): Nested Morphological and Kinematic Structures of Outflows Revealed in SiO and CO Emission

Authors :
Liu, Chun-Fan
Shang, Hsien
Johnstone, Doug
Ai, Tsung-Han
Lee, Tsz Ming
Krasnopolsky, Ruben
Hirano, Naomi
Dutta, Somnath
Hsu, Shih-Ying
López-Vázquez, Jesús Alejandro
Liu, Sheng-Yuan
Liu, Tie
Tatematsu, Ken'ichi
Zhang, Qizhou
Rawlings, Mark G.
Eden, David
Ren, Zhiyuan
Sanhueza, Patricio
Kwon, Woojin
Lee, Chang Won
Kuan, Yi-Jehng
Bandopadhyay, Somdeb
Väisälä, Miikka S.
Lee, Chin-Fei
Das, Indrani
Publication Year :
2024

Abstract

The Atacama Large Millimeter/submillimeter Array Survey of Orion Planck Galactic Cold Clumps (ALMASOP) reveals complex nested morphological and kinematic features of molecular outflows through the CO (J = 2 - 1) and SiO (J = 5 - 4) emission. We characterize the jet and outflow kinematics of the ALMASOP sample in four representative sources (HOPS 10, 315, 358, and G203.21-11.20W2) through channel maps and position-velocity diagrams (PVDs) parallel and transverse to the outflow axes. The combined CO and SiO emission exhibits the coexistence of the conventional extremely-high-velocity (EHV) jets and shell-like low-velocity (LV) cavity walls and new features. More complex, nested bubble-like and filamentary structures in the images and channel maps, triangle-shaped regions near the base of the parallel PVDs, and regions composed of rhombus/oval shapes in the transverse PVDs, are also evident. Such features find natural explanations within the bubble structure of the unified model of jet, wind, and ambient medium. The reverse shock cavity is revealed on the PVD base regions, and other features naturally arise within the dynamic postshock region of magnetic interaction. The finer nested shells observed within the compressed wind region reveal previously unnoticed shocked emission between the jet and the conventional large cavity walls. These pseudopulse-produced filamentary features connect to the jet-like knotty blobs, creating an impression of episodicity in mass ejection. SiO emission is enhanced downstream of the reverse shock boundary, with jet-like excitation conditions. Combined, these observed features reveal the extended structures induced by the magnetic interplay between a jet-bearing magnetized wide-angle wind and its ambient magnetized surrounding medium.<br />Comment: 27 pages, 11 figures, accepted by ApJ

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2411.08827
Document Type :
Working Paper