2014MNRAS.439.3683M


Query : 2014MNRAS.439.3683M

2014MNRAS.439.3683M - Mon. Not. R. Astron. Soc., 439, 3683-3693 (2014/April-3)

Properties of starless and prestellar cores in Taurus revealed by Herschel SPIRE/PACS imaging.

MARSH K.A., GRIFFIN M.J., PALMEIRIM P., ANDRE Ph., KIRK J., STAMATELLOS D., WARD-THOMPSON D., ROY A., BONTEMPS S., DI FRANCESCO J., ELIA D., HILL T., KONYVES V., MOTTE F., NGUYEN-LUONG Q., PERETTO N., PEZZUTO S., RIVERA-INGRAHAM A., SCHNEIDER N., SPINOGLIO L. and WHITE G.

Abstract (from CDS):

The density and temperature structures of dense cores in the L1495 cloud of the Taurus star-forming region are investigated using Herschel Spectral and Photometric Imaging Receiver and Photodetector Array Camera and Spectrometer images in the 70, 160, 250, 350 and 500 µm continuum bands. A sample consisting of 20 cores, selected using spectral and spatial criteria, is analysed using a new maximum likelihood technique, COREFIT, which takes full account of the instrumental point spread functions. We obtain central dust temperatures, T0, in the range 6-12K and find that, in the majority of cases, the radial density falloff at large radial distances is consistent with the asymptotic r-2 variation expected for Bonnor-Ebert spheres. Two of our cores exhibit a significantly steeper falloff, however, and since both appear to be gravitationally unstable, such behaviour may have implications for collapse models. We find a strong negative correlation between T0 and peak column density, as expected if the dust is heated predominantly by the interstellar radiation field. At the temperatures we estimate for the core centres, carbon-bearing molecules freeze out as ice mantles on dust grains, and this behaviour is supported here by the lack of correspondence between our estimated core locations and the previously published positions of H13CO+ peaks. On this basis, our observations suggest a sublimation-zone radius typically ∼ 104 au. Comparison with previously published N2H+ data at 8400 au resolution, however, shows no evidence for N2H+ depletion at that resolution.

Abstract Copyright: © 2014 The Authors Published by Oxford University Press on behalf of the Royal Astronomical Society (2014)

Journal keyword(s): methods: data analysis - techniques: high angular resolution - stars: formation - stars: protostars - ISM: clouds - submillimetre: ISM

Nomenclature: Fig. 1, Tables 2-4: [MGP2014] NN (Nos 1-20).

Simbad objects: 28

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Number of rows : 28
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 HGBS J041335.4+282117 cor 04 13 35.8 +28 21 11           ~ 4 0
2 HGBS J041700.4+282631 cor 04 17 00.6 +28 26 32           ~ 2 0
3 HGBS J041732.1+274136 cor 04 17 32.3 +27 41 27           ~ 3 0
4 Barnard 211 DNe 04 17 35 +27 43.1           ~ 127 0
5 HGBS J041734.7+280629 cor 04 17 35.2 +28 06 36           ~ 2 0
6 HGBS J041736.4+275539 cor 04 17 36.2 +27 55 46           ~ 3 0
7 HGBS J041741.9+280846 cor 04 17 41.8 +28 08 47           ~ 12 0
8 HGBS J041743.1+280600 cor 04 17 43.2 +28 05 59           ~ 9 0
9 HGBS J041749.3+275013 cor 04 17 49.4 +27 50 13           ~ 3 0
10 HGBS J041750.3+275604 cor 04 17 50.6 +27 56 01           ~ 10 0
11 HGBS J041751.9+281232 cor 04 17 52.0 +28 12 26           ~ 5 0
12 HGBS J041752.6+282342 cor 04 17 52.5 +28 23 43           ~ 3 0
13 HGBS J041803.8+282304 cor 04 18 03.8 +28 23 06           ~ 10 0
14 LDN 1495 DNe 04 18.1 +27 37           ~ 366 1
15 HGBS J041807.8+280506 cor 04 18 08.4 +28 05 12           ~ 13 0
16 [HTK2013] 7 cor 04 18 11.5 +27 35 15           ~ 11 0
17 HGBS J041937.7+271526 cor 04 19 37.6 +27 15 31           ~ 18 0
18 IRAS 04166+2706 Y*O 04 19 42.62736 +27 13 38.4312           ~ 135 0
19 HGBS J041951.2+271138 cor 04 19 51.7 +27 11 33           ~ 9 0
20 HGBS J042002.9+281229 cor 04 20 02.9 +28 12 26           ~ 2 0
21 Barnard 213 DNe 04 20 51 +27 16.3           ~ 217 0
22 [OMK2002] 16a cor 04 20 52.5 +27 02 20           ~ 3 0
23 HGBS J042106.5+265740 cor 04 21 06.8 +26 57 45           ~ 2 0
24 [MGP2014] 20 cor 04 21 12.0 +26 55 51           ~ 1 0
25 NAME Taurus Complex SFR 04 41.0 +25 52           ~ 4415 0
26 NAME Ophiuchus Molecular Cloud SFR 16 28 06 -24 32.5           ~ 3629 1
27 NAME Aql Region reg 18 31.1 -02 10           ~ 391 0
28 NAME Gould Belt PoG ~ ~           ~ 873 1

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