The physical environment around IRAS 17599-2148: infrared dark cloud and bipolar nebula
L. K. Dewangan, D. K. Ojha, I. Zinchenko, P. Janardhan, S. K. Ghosh,, A. Luna

TL;DR
This study investigates the star formation environment around IRAS 17599-2148 using multi-wavelength data, revealing massive clumps, YSO clusters, and a bipolar nebula, with insights into gravitational stability and star formation processes.
Contribution
It provides a detailed multi-scale analysis of the star-forming region, identifying clumps, YSOs, and environmental features, highlighting processes not solely driven by HII region expansion.
Findings
Six massive clumps identified with high mass and density.
72% of YSOs are clustered in the filamentary structure.
Evidence of gravitational instability and star formation independent of HII region expansion.
Abstract
We present a multi-scale and multi-wavelength study to investigate the star formation process around IRAS 175992148 that is part of an elongated filamentary structure (EFS) (extension 21 pc) seen in the {\it Herschel} maps. Using the {\it Herschel} data analysis, at least six massive clumps (M 777 -- 7024 M) are found in the EFS with a range of temperature and column density of 16--39~K and 0.6--11~~10 cm (A 7--117 mag), respectively. The EFS hosts cold gas regions (i.e. infrared dark cloud) without any radio detection and a bipolar nebula (BN) linked with the H\,{\sc ii} region IRAS 175992148, tracing two distinct environments inferred through the temperature distribution and ionized emission. Based on virial analysis and higher values of self-gravitating pressure, the clumps are found unstable against…
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