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Title:
LWS observations of the bright rimmed globule IC 1396N.
Authors:
Saraceno, P.; Ceccarelli, C.; Clegg, P.; Correia, C.; di Giorgio, A.; Giannini, T.; Griffin, M.; Lorenzetti, D.; Molinari, S.; Nguyen-Q-Rieu; Nisini, B.; Radicchi, A.; Spinoglio, L.; Tommasi, E.; White, G. J.; Ade, P. A. R.; Andre, P.; Armand, C.; Barlow, M. J.; Burgdorf, M.; Caux, E.; Cerulli, P.; Fischer, J.; Furniss, I.; Glencross, B.; Gry, C.; King, K. J.; Lim, T.; Liseau, R.; Minchin, N.; Naylor, D.; Texier, D.; Orfei, R.; Palla, F.; Sidher, S.; Smith, H. A.; Swinyard, B.; Trams, N.; Unger, S.
Publication:
Astronomy and Astrophysics, v.315, p.L293-L296 (A&A Homepage)
Publication Date:
11/1996
Origin:
CDS
Astronomy Keywords:
STARS: FORMATION, ISM: JETS AND OUTFLOWS, ISM: INDIVIDUAL OBJECTS: IC 1396N, INFRARED: ISM:LINES
Bibliographic Code:
1996A&A...315L.293S

Abstract

We present the first far-infrared spectrum of the IRAS source associated with IC 1396N, located in the HII region IC 1396 together with submillimeter and millimeter photometry. A rich spectrum of CO, OH, and H_2_O lines are detected in the ISO-LWS spectrum, indicative of a warm, dense region, probably shock excited, around the source. Among the fine structure lines, [OIII] and [NIII] are also detected and can be explained by the presence of the O6 star HD206267 approximately 16pc away. The far infrared and submillimeter spectral energy distribution is fitted with a model assuming spherical grey-bodies with a radial power law of density and temperature. An accurate measure of the bolometric luminosity and an estimate of the total envelope mass are obtained.

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