The M16 molecular complex under the influence of NGC6611. Herschel's perspective of the heating effect on the Eagle Nebula
T. Hill, F. Motte, P. Didelon, G. J. White, A. P. Marston, Q. Nguyen, Luong, S. Bontemps, Ph. Andr\'e, N. Schneider, M. Hennemann, M. Sauvage, J., Di Francesco, V. Minier, L. D. Anderson, J. P. Bernard, D. Elia, M. J., Griffin, J. Z. Li, N. Peretto, S. Pezzuto, D. Polychroni

TL;DR
Herschel observations of the Eagle Nebula reveal how the nearby NGC6611 star cluster influences dust temperature and structure, affecting star formation conditions and the nebula's morphology.
Contribution
This study provides detailed Herschel infrared imaging of M16, demonstrating the heating effects of NGC6611 on the nebula's dust and the resulting impact on star formation environments.
Findings
Dust temperature decreases with distance from NGC6611.
Filamentary structures show a heating penetration depth of ~10 pc.
OB clusters influence initial conditions for star formation.
Abstract
We present Herschel images from the HOBYS key program of the Eagle Nebula (M16) in the far-infrared and sub-millimetre, using the PACS and SPIRE cameras at 70{\mu}m, 160{\mu}m, 250{\mu}m, 350{\mu}m, 500{\mu}m. M16, home to the Pillars of Creation, is largely under the influence of the nearby NGC6611 high-mass star cluster. The Herschel images reveal a clear dust temperature gradient running away from the centre of the cavity carved by the OB cluster. We investigate the heating effect of NGC6611 on the entire M16 star-forming complex seen by Herschel including the diffuse cloud environment and the dense filamentary structures identified in this region. In addition, we interpret the three-dimensional geometry of M16 with respect to the nebula, its surrounding environment, and the NGC6611 cavity. The dust temperature and column density maps reveal a prominent eastern filament running…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Advanced Combustion Engine Technologies · Stellar, planetary, and galactic studies
