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  5. JWST-ALMA study of a hub-filament system in the nascent phase
 
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JWST-ALMA study of a hub-filament system in the nascent phase

Source
arXiv
ISSN
2331-8422
Date Issued
2024-12-01
Author(s)
Bhadari, N. K.
Dewangan, L. K.
Jadhav, Omkar Ratan
Hoque, Ariful
Pirogov, L. E.
Goldsmith, Paul F.
Maity, Arup Kumar
Sharma, Saurabh
Ismail, A. Haj
Baug, Tapas
Abstract
Star clusters, including high-mass stars, form within hub-filament systems (HFSs). Observations of HFSs that remain unaffected by feedback from embedded stars are rare yet crucial for understanding the mass inflow process in high-mass star formation. Using the JWST NIRCAM images, Dewangan et al. 2024, reported that the high-mass protostar G11P1 is embedded in a candidate HFS (G11P1-HFS; <0.6 pc). Utilizing ALMA N2H+(1-0) data, we confirm the presence of G11P1-HFS and study the dense gas kinematics. We analyzed the position-position-velocity (PPV) map and estimated on-sky velocity gradient (Vg) and gravity (Fg) vectors. The spatial distribution of gas velocity and H2 column density was examined. The steep Vg of 5 km s−1 pc−1 and −7 km s−1 pc−1 toward either side of G11P1-hub, and the decreasing Vg toward the hub, identify G11P1-HFS as a small-scale HFS in its nascent phase. Vg and Fg align along the filaments, indicating gravity-driven flows. This work highlights the wiggled, funnel-shaped morphology of a HFS in PPV space, suggesting the importance of subfilaments or transverse gas flows in mass transportation to the hub.
URI
http://arxiv.org/abs/2501.00506
https://d8.irins.org/handle/IITG2025/18569
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