2006A&A...454L..79P


Query : 2006A&A...454L..79P

2006A&A...454L..79P - Astronomy and Astrophysics, volume 454, L79-82 (2006/8-1)

CO and CH3OH observations of the BHR71 outflows with APEX.

PARISE B., BELLOCHE A., LEURINI S., SCHILKE P., WYROWSKI F. and GUESTEN R.

Abstract (from CDS):

Highly-collimated outflows are believed to be the earliest stage in outflow evolution, so their study is essential for understanding the processes driving outflows. The BHR71 Bok globule is known to harbour such a highly-collimated outflow, which is powered by a protostar belonging to a protobinary system. We aimed at investigating the interaction of collimated outflows with the ambient molecular cloud by using molecular tracers. We mapped the BHR71 highly-collimated outflow in CO(3-2) with the APEX telescope, and observed several bright points of the outflow in the molecular transitions CO(4-3), 13CO(3-2), C18O(3-2), and CH3OH(7-6). We use an LVG code to characterise the temperature enhancements in these regions. In our CO(3-2) map, the second outflow driven by IRS2, which is the second source of the binary system, is completely revealed and shown to be bipolar. We also measure temperature enhancements in the lobes. The CO and methanol LVG modelling points to temperatures between 30 and 50K in the IRS1 outflow, while the IRS2 outflow seems to be warmer (up to 300K).

Abstract Copyright:

Journal keyword(s): stars: formation - ISM: jets and outflows

Simbad objects: 8

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Number of rows : 8
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 RAFGL 4078 C* 07 45 02.4149777160 -71 19 45.862198392       15.92 12.72 C 54 0
2 HH 320 HH 12 01 32.7 -65 08 11           ~ 15 0
3 [B2001b] IRS 2 Y*O 12 01 33.86688 -65 08 44.9232           ~ 31 0
4 [B2001b] IRS 1 Y*O 12 01 36.53040 -65 08 51.9180           ~ 153 0
5 BHR 71 MoC 12 01 37 -65 08.8           ~ 154 0
6 NAME BHR 71 MM HII 12 01 37.1 -65 08 54           ~ 43 0
7 HH 321B HH 12 01 39.2296066560 -65 10 18.105867480           ~ 5 0
8 WOS 48 C* 15 23 05.0730770544 -51 25 58.762691652   17.85 16.66 14.51 10.18 C 133 1

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