2018MNRAS.477.2455C


Query : 2018MNRAS.477.2455C

2018MNRAS.477.2455C - Mon. Not. R. Astron. Soc., 477, 2455-2469 (2018/June-3)

Infall and outflow motions towards a sample of massive star-forming regions from the RMS survey.

CUNNINGHAM N., LUMSDEN S.L., MOORE T.J.T., MAUD L.T. and MENDIGUTIA I.

Abstract (from CDS):

We present the results of an outflow and infall survey towards a distance-limited sample of 31 massive star-forming regions drawn from the Red MSX source (RMS) survey. The presence of young, active outflows is identified from SiO (8-7) emission and the infall dynamics are explored using HCO+/H13CO+ (4-3) emission. We investigate if the infall and outflow parameters vary with source properties, exploring whether regions hosting potentially young active outflows show similarities or differences with regions harbouring more evolved, possibly momentum-driven, 'fossil' outflows. SiO emission is detected towards approximately 46 per cent of the sources. When considering sources with and without an SiO detection (i.e. potentially active and fossil outflows, respectively), only the 12CO outflow velocity shows a significant difference between samples, indicating SiO is more prevalent towards sources with higher outflow velocities. Furthermore, we find the SiO luminosity increases as a function of the Herschel 70 µm to WISE 22 µm flux ratio, suggesting the production of SiO is prevalent in younger, more embedded regions. Similarly, we find tentative evidence that sources with an SiO detection have a smaller bolometric luminosity-to-mass ratio, indicating SiO (8-7) emission is associated with potentially younger regions. We do not find a prevalence towards sources displaying signatures of infall in our sample. However, the higher energy HCO+ transitions may not be the best suited tracer of infall at this spatial resolution in these regions.

Abstract Copyright: © 2018 The Author(s) Published by Oxford University Press on behalf of the Royal Astronomical Society

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

Simbad objects: 51

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Number of rows : 51
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 IRAS 06099+1800 IR 06 12 53.3 +17 59 22           ~ 15 0
2 MMB G192.600-00.048 Y*O 06 12 54.0100 +17 59 23.200           ~ 401 0
3 2MASS J06131613+1522433 Y*O 06 13 16.154 +15 22 43.08           ~ 5 0
4 RAFGL 5186 HII 06 13 16.34 +15 22 42.2           ~ 27 1
5 IRAS 06117+1350 HII 06 14 37 +13 49.6           ~ 55 0
6 MSX6C G196.4542-01.6777 Y*O 06 14 37.06 +13 49 36.4           ~ 6 0
7 RAFGL 961 Y*O 06 34 37.74144 +04 12 44.1972           O-rich 240 1
8 RAFGL 989 Y*O 06 41 10.1587451112 +09 29 33.635220144   17.4 16.8 18.26 17.28 B2 266 0
9 NAME Mon OB1 C PoC 06 41 11 +09 29.1           ~ 53 1
10 [WZM2000] MMS 3 mm 06 41 12.3 +09 29 12           ~ 32 0
11 MSX6C G217.3771-00.0828 Y*O 06 59 15.8 -03 59 36           ~ 4 1
12 NAME Bip 14 Cluster OpC 06 59 16.7 -03 59 35           ~ 60 0
13 RAFGL 5232 Y*O 07 30 16.7317253640 -18 35 49.105365144 19.688 18.820 17.821 16.920 14.584 Ae 21 0
14 W 33a Y*O 18 14 39.56547 -17 52 02.2260           ~ 698 0
15 MSX5C G013.6559-00.5997 Y*O 18 17 24.3 -17 22 16           ~ 7 0
16 IRAS 18144-1723 IR 18 17 24.4 -17 22 13           ~ 34 0
17 IRAS 18151-1208 Y*O 18 17 58.1254 -12 07 24.893           ~ 106 0
18 NAME HH 80-81 IRS HII 18 19 11.8 -20 47 35           ~ 148 0
19 2MASS J18191220-2047297 Y*O 18 19 12.21 -20 47 29.7           B1 133 0
20 RAFGL 2136 Y*O 18 22 26.52888 -13 30 14.0400           ~ 285 0
21 IRAS 18264-1052 Y*O 18 29 12.19800 -10 50 34.7064           ~ 18 0
22 IRAS 19088+0902 Rad 19 11 15.9 +09 07 27           ~ 21 0
23 CORNISH G043.3064-00.2114 Y*O 19 11 17.05 +09 07 29.0           ~ 7 0
24 IRAS 19110+1045 Y*O 19 13 22.0427 +10 50 53.336           ~ 126 0
25 IRAS 19236+1456 Y*O 19 25 57.935 +15 03 01.76           ~ 16 0
26 IRAS 20126+4104 Y*O 20 14 25.8816769656 +41 13 36.879427236           B2.5-B0.5 441 0
27 CPM 35 cor 20 23 23.855 +41 17 40.49           ~ 57 0
28 MSX6C G079.1272+02.2782 Y*O 20 23 23.9 +41 17 39           ~ 7 0
29 2MASS J20302733+4116000 Y*O 20 30 27.336 +41 16 00.04           ~ 8 0
30 IRAS 20286+4105 HII 20 30 29.9 +41 15 51           ~ 54 1
31 MSX6C G083.0936+03.2724 Y*O 20 31 35.4 +45 05 48           ~ 7 1
32 MSX6C G083.7071+03.2817 Y*O 20 33 36.5573443078 +45 35 43.865615695           ~ 10 0
33 MSX6C G083.7962+03.3058 Y*O 20 33 48.1 +45 40 54           ~ 6 1
34 MSX6C G080.8645+00.4197 Y*O 20 36 52.175 +41 36 24.74           ~ 10 1
35 MSX6C G081.8652+00.7800 Y*O 20 38 35.36 +42 37 13.7           ~ 8 0
36 NAME Cyg X FIR 33 Y*O 20 38 35.9 +42 37 22           B1.5 401 1
37 MSX6C G081.8789+00.7822 Y*O 20 38 37.73 +42 37 59.4           ~ 8 1
38 2MASS J20385719+4222409 Y*O 20 38 57.19 +42 22 41.0           ~ 12 0
39 GAL 081.74+00.59 cor 20 39 00.37 +42 24 36.6           ~ 26 0
40 DR 21 (OH) cor 20 39 01.01 +42 22 50.2           ~ 410 0
41 MSX6C G081.7220+00.5699 Y*O 20 39 01.4 +42 22 47           ~ 7 0
42 DR 21 SFR 20 39 01.6 +42 19 38           O4.5 1055 0
43 MSX6C G081.7522+00.5906 Y*O 20 39 01.9930 +42 24 59.290           ~ 30 0
44 2MASS J20390285+4222001 Y*O 20 39 02.85336 +42 22 00.1992           ~ 11 0
45 [CLZ2017] Cyg-N53 cor 20 39 03.2 +42 25 49           ~ 19 0
46 [DKS2007] 13 Y*O 20 39 03.72 +42 25 29.6           ~ 12 0
47 IRAS Z20376+4109 Y*O 20 39 25.8 +41 20 02           ~ 25 1
48 IRAS 22134+5834 Y*O 22 15 09.08 +58 49 07.8           ~ 72 0
49 NAME Cepheus A SFR 22 56 17.9 +62 01 49           ~ 741 2
50 MSX5C G109.8719+02.1158 Y*O 22 56 18.1 +62 01 56           ~ 6 0
51 GAL 109.88+02.11 HII 22 56 19.4 +62 02 01           ~ 74 0

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