2012ApJ...751..135P


Query : 2012ApJ...751..135P

2012ApJ...751..135P - Astrophys. J., 751, 135 (2012/June-1)

H2D+ in the high-mass star-forming region Cygnus X.

PILLAI T., CASELLI P., KAUFFMANN J., ZHANG Q., THOMPSON M.A. and LIS D.C.

Abstract (from CDS):

H2D+ is a primary ion that dominates the gas-phase chemistry of cold dense gas. Therefore, it is hailed as a unique tool in probing the earliest, prestellar phase of star formation. Observationally, its abundance and distribution is, however, just beginning to be understood in low-mass prestellar and cluster-forming cores. In high-mass star-forming regions, H2D+ has been detected only in two cores, and its spatial distribution remains unknown. Here, we present the first map of the ortho-H2D+ Jk+,k– = 1_1, 0_ ⟶ 1_1, 1_ and N2H+ 4-3 transition in the DR21 filament of Cygnus X with the James Clerk Maxwell Telescope, and N2D+ 3-2 and dust continuum with the Submillimeter Array. We have discovered five very extended ( ≤ 34, 000 AU diameter) weak structures in H2D+ in the vicinity of, but distinctly offset from, embedded protostars. More surprisingly, the H2D+ peak is not associated with either a dust continuum or N2D+ peak. We have therefore uncovered extended massive cold dense gas that was undetected with previous molecular line and dust continuum surveys of the region. This work also shows that our picture of the structure of cores is too simplistic for cluster-forming cores and needs to be refined: neither dust continuum with existing capabilities nor emission in tracers like N2D+ can provide a complete census of the total prestellar gas in such regions. Sensitive H2D+ mapping of the entire DR21 filament is likely to discover more of such cold quiescent gas reservoirs in an otherwise active high-mass star-forming region.

Abstract Copyright:

Journal keyword(s): ISM: abundances - ISM: clouds - ISM: individual: Cygnus X - ISM: molecules - ISM: structure - radio lines: ISM - stars: formation

Nomenclature: Table 2: [PCK2012] PN N=6 (Nos P1-P6)

Simbad objects: 24

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Number of rows : 24
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 NAME Taurus Complex SFR 04 41.0 +25 52           ~ 4414 0
2 LDN 1544 DNe 05 04 16.6 +25 10 48           ~ 862 0
3 NAME [BM89] L1544 cor 05 04 22.5 +25 11 36           ~ 437 1
4 NAME Ori B MoC 05 41 43.0 -01 54 44           ~ 1375 0
5 NAME Ori B9 Cloud Cld 05 42 30.5 -01 20 33           ~ 23 0
6 NAME rho Oph A Cloud MoC 16 26 26.4 -24 22 33           ~ 289 1
7 [DAM2004] Oph A-N6 cor 16 26 31.6 -24 24 52           ~ 20 0
8 NAME rho Oph B2 Cloud PoC 16 27 27.9 -24 26 29           ~ 82 1
9 NAME Ophiuchus Molecular Cloud SFR 16 28 06 -24 32.5           ~ 3629 1
10 SDC G30.895+0.134 DNe 18 47 14.61 -01 45 03.3           ~ 8 0
11 NAME Cyg X BL? 20 30 04.7973633 +40 51 36.002197           ~ 843 1
12 [CQZ2019] N03-1 cor 20 35 34.10 +42 20 05.0           ~ 12 0
13 [PCK2012] P4 cor 20 38 58.3 +42 24 44           ~ 1 0
14 [PCK2012] P5 cor 20 38 58.9 +42 24 22           ~ 1 0
15 GAL 081.74+00.59 cor 20 39 00.37 +42 24 36.6           ~ 26 0
16 DR 21 (OH) cor 20 39 01.01 +42 22 50.2           ~ 409 0
17 DR 21 SFR 20 39 01.6 +42 19 38           O4.5 1053 0
18 [PCK2012] P3 cor 20 39 01.7 +42 25 21           ~ 1 0
19 MSX6C G081.7522+00.5906 Y*O 20 39 01.9930 +42 24 59.290           ~ 30 0
20 NAME W 75S FIR 3 Y*O 20 39 02.97 +42 25 52.5           ~ 20 0
21 [PCK2012] P2 cor 20 39 03.1 +42 25 37           ~ 1 0
22 [PCK2012] P1 cor 20 39 03.7 +42 25 21           ~ 1 0
23 [DKS2007] 13 Y*O 20 39 03.72 +42 25 29.6           ~ 12 0
24 3C 454.3 Bla 22 53 57.7480438728 +16 08 53.561508864   16.57 16.10 15.22   ~ 2845 2

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