2013A&A...553A..58L


Query : 2013A&A...553A..58L

2013A&A...553A..58L - Astronomy and Astrophysics, volume 553A, 58-58 (2013/5-1)

Star-forming regions of the Aquila rift cloud complex. I. NH3 tracers of dense molecular cores.

LEVSHAKOV S.A., HENKEL C., REIMERS D., WANG M., MAO R., WANG H. and XU Y.

Abstract (from CDS):

The physics of star formation is an important part of Galactic evolution. Most stars are formed in high-density environments (n > 104/cm3) and emit lines of diverse molecular transitions. In the present part of our survey we search for ammonia emitters in the Aquila rift complex, which trace the densest regions of molecular clouds. From a CO survey carried out with the Delingha 14-m telescope we selected ∼150 targets for observations in other molecular lines. Here we describe the mapping observations in the NH3(1, 1) and (2, 2) inversion lines of the first 49 sources performed with the Effelsberg 100-m telescope. The NH3(1, 1) emission lines are detected in 12 and the (2, 2) in 7 sources. Among the newly discovered NH3 sources, our sample includes the following well-known clouds: the starless core L694-2, the Serpens cloud cluster B, the Serpens dark cloud L572, the filamentary dark cloud L673, the isolated protostellar source B335, and the complex star-forming region Serpens South. Angular sizes between 40'' and 80'' (∼0.04-0.08 pc) are observed for compact starless cores but can be as large as 9' (∼0.5 pc) for filamentary dark clouds. The measured kinetic temperatures of the clouds lie between 9 K and 18 K. From NH3 excitation temperatures of 3-8 K we determine H2 densities with typical values of ~(0.4-4)x104/cm3. The masses of the mapped cores range between ∼0.05 and ∼0.5 M. The relative ammonia abundance X= [NH3]/[H2] varies from 1x10–7 to 5x10–7 with the mean <X≥ (2.7±0.6)x10–7 (estimated from spatially resolved cores assuming a filling factor of η= 1). In two clouds, we observe kinematically split NH3 profiles separated by ∼1 km/s. The splitting is most likely due to bipolar molecular outflows, for one of which we determine an acceleration of {dot}(V) ≲0.03 km/s/yr. A starless core with significant rotational energy is found to have a higher kinetic temperature than the other ones, which is probably caused by magnetic energy dissipation.

Abstract Copyright:

Journal keyword(s): ISM: clouds - ISM: molecules - ISM: kinematics and dynamics - radio lines: ISM - techniques: spectroscopic - line: profiles

Nomenclature: Tables 1-2: [LHR2013] KaNN N=14 among (Nos 1-23), [LHR2013] Ka14-15-A N=1. Fig. 10, Paragr. 3.8, Table 1: [LHR2013] Serpens South 3 N=1.

CDS comments: Paragraph 3.8 Sources B1 to B4, R2 and R3 not in Simbad.

Simbad objects: 127

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Number of rows : 127
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 2MASX J00030396+3422408 G 00 03 03.967 +34 22 40.88   17.5       ~ 7 0
2 2MASX J00041551+3318213 G 00 04 15.511 +33 18 21.37   17.0       ~ 9 0
3 2MASX J00052022+3259127 G 00 05 20.221 +32 59 12.75   17.2       ~ 7 0
4 2MASX J00053678+3301308 G 00 05 36.7744764504 +33 01 30.136515024   17.2       ~ 5 0
5 MCG+04-01-020 AG? 00 05 52.3355849376 +22 32 08.536426692   16.5       ~ 26 0
6 2MFGC 102 G 00 07 15.494 +33 55 02.15   15.5       ~ 13 0
7 NGC 29 GiG 00 10 46.9110082032 +33 21 10.204234704   13.5       ~ 63 1
8 Ka 21 G 00 13.2 +33 04   16.5       ~ 5 0
9 UGC 238 G 00 25 03.3387947256 +31 20 41.329361544   14.4       ~ 57 0
10 MCG-02-02-038 EmG 00 31 13.2893979888 -10 28 51.603900420   14.0       ~ 43 0
11 Bol 335 GlC 00 40 41.685 +40 38 28.16 19.615 19.011 17.824 17.001 16.158 ~ 40 0
12 2MASX J00410874+3937359 G 00 41 08.7874254936 +39 37 36.425091180   18.02 16.74     ~ 9 0
13 Bol 135 GlC 00 42 51.9745899672 +41 31 08.204480040 17.117 16.866 15.953 15.358 14.820 ~ 70 0
14 Bol 143 GlC 00 42 59.6426520720 +41 19 19.253372304 17.800 17.075 16.087 15.486 14.94 ~ 82 0
15 Mrk 960 bCG 00 48 35.430 -12 42 59.77   15.5       ~ 105 0
16 IC 56 LSB 00 51 29.9318442744 -12 50 39.726074292   16.5       ~ 19 0
17 NAME Auriga reg 04 20 00.0 +38 05 00           ~ 207 0
18 NAME Per B AGN 04 37 04.37535450 +29 40 13.8179631   21.7       ~ 514 2
19 NAME Taurus Complex SFR 04 41.0 +25 52           ~ 4414 0
20 NAME Ophiuchus Molecular Cloud SFR 16 28 06 -24 32.5           ~ 3628 1
21 NGC 6306 GiG 17 07 36.907 +60 43 43.19 14.42 14.40 13.74     ~ 47 1
22 NAME the Pipe Nebula DNe 17 30 -25.0           ~ 403 1
23 NAME Galactic Center reg 17 45 39.60213 -29 00 22.0000           ~ 14400 0
24 TGU H243 P3 DNe 18 03.2 -04 53           ~ 2 0
25 TGU H243 P1 DNe 18 03.9 -04 27           ~ 2 0
26 JCMTSF J180447.8-043208 smm 18 04 47.8 -04 32 08           ~ 2 0
27 TGU H243 P2 DNe 18 05.0 -04 31           ~ 2 0
28 LEDA 61389 G 18 05 28.3 +65 54 32   17.0       ~ 8 0
29 TGU H243 P6 DNe 18 08.7 -03 24           ~ 2 0
30 TGU H243 P13 DNe 18 11.1 -02 00           ~ 2 0
31 TGU H243 P8 DNe 18 13.6 -03 14           ~ 2 0
32 TGU H243 P7 DNe 18 16.3 -03 26           ~ 2 0
33 TGU H279 P19 DNe 18 21.1 -02 59           ~ 2 0
34 IRAS 18191-0310 FIR 18 21 44.55 -03 08 54.7           ~ 1 0
35 TGU H279 P21 DNe 18 21.8 -03 11           ~ 2 0
36 TGU H279 P27 DNe 18 23.7 -03 15           ~ 2 0
37 SH 2-68 PN 18 24 58.4294414904 +00 51 36.021249072   16.0 16.5     DAOZ.6 130 1
38 TGU H279 P2 DNe 18 26.7 -03 42           ~ 3 0
39 TGU H279 P25 DNe 18 26.8 -04 32           ~ 2 0
40 TGU H279 P3 DNe 18 28.8 -03 32           ~ 2 0
41 TGU H279 P5 DNe 18 29.0 -03 45           ~ 2 0
42 HBC 668 Em* 18 29 01.2260660808 +00 29 33.122252544   16.8       M0.5: 25 0
43 NAME Serpens G3-G6 Cluster Cl* 18 29 01.5 +00 29 40           ~ 27 1
44 HBC 671 Em* 18 29 01.8374128680 +00 29 54.755552004   18.4       K0: 27 0
45 [HMH2007] 60 Y*O 18 29 02.12 +00 31 20.7           ~ 13 0
46 SSTc2d J182905.5+003015 * 18 29 05.58 +00 30 15.7           ~ 2 0
47 TGU H279 P14 DNe 18 29.1 -03 16           ~ 2 0
48 TGU H279 P6 DNe 18 29.1 +00 35           ~ 4 0
49 SSTc2d J182907.1+003043 * 18 29 07.09 +00 30 43.1           ~ 3 0
50 TGU H279 P22 DNe 18 29.3 -01 26           ~ 3 0
51 TGU H279 P12 DNe 18 29.8 +01 17           ~ 4 0
52 SH 2-68 N Y*O 18 29 48.09 +01 16 45.0           ~ 137 1
53 NAME Serpens Cloud SFR 18 29 49 +01 14.8           ~ 1100 2
54 GCNM 23 Y*O 18 29 49.63 +01 15 21.9           ~ 273 2
55 V* V371 Ser Or* 18 29 51.21240 +01 16 39.4860           ~ 119 1
56 GBS-VLA J182952.22+011547.4 Y*O 18 29 52.20 +01 15 47.6           ~ 47 1
57 [CED93] 7 smm 18 29 55.6 +01 14 52           ~ 4 0
58 [LHR2013] Serpens South 3 cor 18 29 57.0 -02 00 10           ~ 4 1
59 NAME Serpens Cluster As* 18 29 57 +01 14.4           ~ 65 0
60 IRAS 18274+0112 Y*O 18 29 57.73680 +01 14 05.6940           M4: 139 2
61 [EC92] 95 Y*O 18 29 57.893 +01 12 46.25           K1.0 73 3
62 HH 458 HH 18 29 58.02 +01 13 43.2           ~ 5 1
63 2MASS J18295913+0111200 Y*O 18 29 59.1300417000 +01 11 20.111697168           M5.0 13 0
64 NAME SERPENS SMM 3 Y*O 18 29 59.28 +01 14 01.7           ~ 101 1
65 SSTc2d J182959.3+011041 Y*O 18 29 59.38 +01 10 40.9           ~ 16 0
66 HGBS J182959.6-020058 Y*O 18 29 59.66 -02 01 03.2           ~ 4 0
67 NAME Serpens SMM 11 smm 18 30 00.3 +01 11 42           ~ 24 0
68 JCMTSE J183000.2+011251 Y*O 18 30 00.4 +01 12 50           ~ 53 0
69 [CED93] 8 smm 18 30 01.8 +01 15 07           ~ 18 0
70 HH 459 HH 18 30 02.6 +01 14 45           ~ 6 1
71 NAME Serpens South Cluster Cl* 18 30 03.00 -02 01 58.2           ~ 132 0
72 TGU H279 P4 DNe 18 30.2 -03 42           ~ 2 0
73 TGU H279 P8 DNe 18 30.4 -02 48           ~ 3 0
74 LDN 572 DNe 18 30.6 +00 02           ~ 6 0
75 TGU H279 P7 DNe 18 30.7 -02 00           ~ 9 0
76 NAME Aql Region reg 18 31.1 -02 10           ~ 391 0
77 LBN 028.77+03.43 HII 18 31 26.5 -02 04 22           ~ 230 2
78 TGU H279 P1 DNe 18 31.5 -02 34           ~ 2 0
79 NAME Aql Rift DNe 18 32 -01.0           ~ 316 1
80 LDN 583 DNe 18 33.6 +00 37           ~ 6 0
81 TGU H279 P18 DNe 18 36.8 -01 16           ~ 2 0
82 IRAS 18351+0010 FIR 18 37 42.0 +00 13 10           ~ 1 0
83 TGU H279 P17 DNe 18 37.8 +00 08           ~ 2 0
84 TGU H279 P20 DNe 18 38.4 -00 05           ~ 2 0
85 TGU H279 P13 DNe 18 39.3 +00 29           ~ 2 0
86 CORNISH G029.9559-00.0168 Y*O 18 46 04.18 -02 39 21.3           ~ 365 0
87 TGU H296 P3 DNe 18 51.3 -04 17           ~ 2 0
88 JCMTSF J185121.1-041714 smm 18 51 21.1 -04 17 14           ~ 2 0
89 TGU H321 P8 DNe 18 55.6 +02 12           ~ 2 0
90 TGU H321 P1 DNe 18 57.2 +00 53           ~ 2 0
91 NAME Sgr Arm PoG 19 00 -30.0           ~ 637 1
92 TGU H321 P5 DNe 19 01.6 +04 05           ~ 2 0
93 Barnard 135 DNe 19 07.5 -03 55           ~ 3 0
94 TGU H299 P1 DNe 19 07.6 -03 55           ~ 2 0
95 TGU H321 P7 DNe 19 10.9 +07 27           ~ 2 0
96 [B77] 16 GNe 19 20.3 +11 22           ~ 3 0
97 IRAS 19180+1116 IR 19 20 22.5 +11 22 07           ~ 17 0
98 IRAS 19180+1114 IR 19 20 25.8 +11 19 52           ~ 12 0
99 TGU H321 P2 DNe 19 20.5 +11 19           ~ 2 0
100 IRAS 19181+1112 Y*? 19 20 30.8695241424 +11 17 54.606240924           ~ 7 0
101 LDN 673 DNe 19 20 54.4 +11 13 12           ~ 73 0
102 [LHR2013] Ka9 cor 19 35 11.0 +12 25 40           ~ 1 0
103 LDN 663 DNe 19 36 55 +07 34.4           ~ 644 0
104 IRAS 19345+0727 cor 19 37 00.7 +07 34 08           ~ 89 0
105 [LHR2013] Ka5 cor 19 37 01.0 +07 34 30           ~ 2 0
106 [DB2002b] G48.23-5.73 cor 19 40 28.7 +10 50 34           ~ 5 0
107 [LHR2013] Ka3 cor 19 40 36.0 +10 20 14           ~ 1 0
108 LDN 690 DNe 19 40.7 +10 20           ~ 5 0
109 LDN 694 DNe 19 40.7 +10 57           ~ 30 0
110 [LHR2013] Ka1 cor 19 41 04.0 +10 57 17           ~ 2 0
111 [LM99] L694-2 cor 19 41 04.6 +10 57 02           ~ 73 0
112 [DB2002b] G48.33-5.90 cor 19 41 16.2 +10 50 46           ~ 5 0
113 [LHR2013] Ka2 cor 19 44 10.0 +10 28 28           ~ 1 0
114 [LHR2013] Ka6 cor 19 47 50.0 +10 50 16           ~ 1 0
115 Barnard 340 DNe 19 48.7 +11 24           ~ 2 0
116 [LHR2013] Ka7 cor 19 48 48.0 +11 23 07           ~ 1 0
117 IRAS 19470-0630 FIR 19 49 45.3 -06 22 38           ~ 1 0
118 [LHR2013] Ka14-15-A cor 19 51 49.0 -10 34 32           ~ 1 0
119 MBM 159 MoC 19 58.6 -14 06           ~ 4 0
120 NAME Cyg Arm PoG 20 02 +40.0           ~ 160 0
121 NGC 7027 PN 21 07 01.571952 +42 14 10.47120   10.358 8.831 10.157   ~ 2457 1
122 NAME Scutum Spiral Arm PoG ~ ~           ~ 351 0
123 [DMR99] Knot c PoC ~ ~           ~ 2 0
124 NAME Galactic Bulge reg ~ ~           ~ 4297 0
125 NAME SMM 9 Knot a3 PoC ~ ~           ~ 3 1
126 [DMR99] Knot b PoC ~ ~           ~ 2 0
127 NAME Vulpecula Region reg ~ ~           ~ 29 0

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