2013A&A...555A..71S


Query : 2013A&A...555A..71S

2013A&A...555A..71S - Astronomy and Astrophysics, volume 555A, 71-71 (2013/7-1)

The Herschel Gould Belt Survey in Chamaeleon. II. Properties of cold dust in disks around young stellar objects.

SPEZZI L., COX N.L.J., PRUSTI T., MERIN B., RIBAS A., ALVES DE OLIVEIRA C., WINSTON E., KOSPAL A., ROYER P., VAVREK R., ANDRE P., PILBRATT G.L., TESTI L., BRESSERT E., RICCI L., MEN'SHCHIKOV A. and KOENYVES V.

Abstract (from CDS):

We report on the Herschel Gould Belt survey (HGBS) of the Chamaeleon II (Cha II) star-forming region, focusing on the detection of Class I to III young stellar objects (YSOs). We aim at characterizing the circumstellar material around these YSOs and at understanding which disk parameters are most likely constrained by the new HGBS data, which are expected to be crucial for studying the transition from optically thick disks to evolved debris-type disks. We recovered 29 of the 63 known YSOs in Cha II with a detection in at least one of the PACS/SPIRE pass-bands: 3 Class I YSOs (i.e.,100%), 1 flat source (i.e., 50%), 21 Class II objects (i.e., 55%), 3 Class III objects (i.e, 16%), and the unclassified far-infrared source IRAS 12522-7640. We explored PACS/SPIRE colors of this sample and modeled their spectral energy distributions (SEDs) from the optical to Herschel's wavelengths with the RADMC-2D radiative transfer code. We find that YSO colors are typically confined to the following ranges: -0.7≲log(F70/F160)≲0.5, -0.5≲log(F160/F250)≲0.6, 0.05≲log(F250/F350)≲0.25 and -0.1≲log(F350/F500)≲0.5. These color ranges are expected to be only marginally contaminated by extragalactic sources and field stars and, hence, provide a useful YSO selection tool when applied together. We were able to model the SED of 26 of the 29 detected YSOs. We discuss the degeneracy/limitations of our SED fitting results and adopted the Bayesian method to estimate the probability of different values for the derived disk parameters. The Cha II YSOs present typical disk inner radii ≲0.1AU, as previously estimated in the literature on the basis of Spitzer data. Our probability analysis shows that, thanks to the new Herschel data, the lower limits to the disk mass (Mdisk) and characteristic radius (RC) are well constrained, while the flaring angle (1+φ) is only marginally constrained. The lower limit to RC is typically around 50AU. The lower limits to Mdisk are proportional to the stellar masses with a typical 0.3% ratio, i.e., in the range estimated in the literature for young Class II stars and brown dwarfs across a broad range of stellar masses. The estimated flaring angles, although very uncertain, point toward very flat disks (1+φ≲1.2), as found for low-mass M-type YSO samples in other star-forming regions. Thus, our results support the idea that disk properties show a dependence on stellar properties.

Abstract Copyright:

Journal keyword(s): stars: pre-main sequence - ISM: clouds - infrared: stars - protoplanetary disks - instrumentation: miscellaneous - ISM: individual objects: Chamaeleon II

CDS comments: Table 5 YSO "CNN" are [VCE2001] CNN in Simbad.

Simbad objects: 72

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Number of rows : 72
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 Tau-Aur Complex SFR 04 30 +25.0           ~ 1357 0
2 NAME Taurus Complex SFR 04 41.0 +25 52           ~ 4416 0
3 NAME Cha 1 MoC 11 06 48 -77 18.0           ~ 1154 1
4 NAME Chamaeleon Region SFR 11 55 -78.0           ~ 806 0
5 NAME Cha-Mus DNe 12 15 -76.7           ~ 37 0
6 NAME Virgo Cluster ClG 12 26 32.1 +12 43 24           ~ 6645 0
7 V* AX Cha Mi* 12 45 06.2856573984 -77 20 13.642917324           M2.5 13 0
8 IRAS 12448-7650 LP? 12 48 25.7049616224 -77 06 36.747495432   17.25 15.14 14.33   M0.5 17 0
9 IRAS Z12488-7658 LP* 12 52 30.6218360736 -77 15 13.123459980           M5.5 13 0
10 V* DK Cha TT* 12 53 17.2111480272 -77 07 10.736046012           F0e 142 0
11 2MASS J12533665-7706394 Y*? 12 53 36.6468178392 -77 06 39.510208008       22.22 19.35 M6 4 0
12 NAME Cha II MoC 12 54 -77.2           ~ 337 0
13 2MASS J12533890-7715532 Y*O 12 53 38.9146387776 -77 15 53.247287808           M1.5 12 1
14 2MASS J12534285-7715114 Y*O 12 53 42.856 -77 15 11.48           M6.5 20 0
15 2MASS J12552576-7700465 Y*? 12 55 25.7478310392 -77 00 46.696978080           M1 5 0
16 SSTc2d J125552.5-765616 Y*O 12 55 52.70 -76 56 16.0           ~ 14 0
17 NAME Sz 46N Em* 12 56 33.6498681600 -76 45 45.520705728   17.66 16.19 14.61 13.16 M1 30 1
18 Sz 47 Y*O 12 56 58.6633997016 -76 47 06.861163092   14.5       ~ 20 0
19 IRAS 12535-7623 Y*O 12 57 11.6949853032 -76 40 11.291754000   17.20 15.00     M0e 42 0
20 NAME Cha J1257-7701 Y*O 12 57 58.70 -77 01 19.5         22.61 M9 9 0
21 2MASS J12580676-7709094 Y*O 12 58 06.6784743816 -77 09 09.650462868         19.61 M6 22 0
22 2MASS J12583674-7704065 Y*? 12 58 36.6569965752 -77 04 06.698050068       22.45 19.32 M9 4 0
23 2MASS J12585614-7630104 Y*O 12 58 56.1408783960 -76 30 10.544207580       16.39 14.38 M5 7 0
24 2MASS J12590656-7707401 Y*O 12 59 06.56 -77 07 40.1           K4.5 48 0
25 2MASS J12590984-7651037 Y*O 12 59 09.8766268200 -76 51 03.756572676           M5.5 14 0
26 2MASS J12591013-7712139 Y*O 12 59 10.1600323896 -77 12 13.864063428           M0 13 0
27 IRAS 12556-7731 LP* 12 59 26.3852196576 -77 47 08.619604404   15.039 13.136 12.748   M5 24 0
28 2MASS J13005303-7709478 Y*? 13 00 53.03 -77 09 47.9       22.63 19.64 M9 4 0
29 RX J1300.9-7708B * 13 00 53.2360864848 -77 09 09.303222348           ~ 9 0
30 Sz 49 Y*O 13 00 53.2473650928 -76 54 15.206649912   15.6       M0.5 43 0
31 RX J1300.9-7708 Y*O 13 00 53.46120 -77 09 08.6580           M1 23 0
32 RX J1300.9-7708A Y*O 13 00 53.5904796360 -77 09 08.405133264   19.17 18.05 16.08 14.32 M0.5 8 0
33 2MASS J13005534-7708296 Y*O 13 00 55.3405780272 -77 08 29.630496552       14.93 13.29 M2.5 8 0
34 Sz 50 Y*O 13 00 55.3820751133 -77 10 22.247668674   17.64 16.01     M3 45 0
35 2MASS J13005927-7714027 Y*O 13 00 59.2811230320 -77 14 02.848183656         16.26 ~ 24 0
36 Sz 51 Or* 13 01 58.8991295760 -77 51 21.848767020   15.38       K8.5 40 0
37 V* CM Cha TT* 13 02 13.5244979592 -76 37 57.818696016   14.70 13.40     K7IVe 42 0
38 2MASS J13022287-7734494 Y*O 13 02 22.8483923232 -77 34 49.479406140           M5 17 0
39 IRAS 12589-7646 Y*O 13 02 47.7032642640 -77 02 39.973174116       13.75 9.98 M4 15 0
40 2MASS J13030444-7707027 TT* 13 03 04.4591495760 -77 07 02.759053872     13.23     M0 16 1
41 2MASS J13030905-7755596 Y*O 13 03 09.0555653520 -77 55 59.569205808           M4.5 9 0
42 2MASS J13031616-7629381 Y*? 13 03 16.1644556256 -76 29 38.139787680       16.42 14.41 M7 6 0
43 Hn 22 Y*O 13 04 22.8528353784 -76 50 05.477354844           M2e 17 0
44 Hn 23 Y*O 13 04 24.1091476992 -76 50 01.203848088           K7e 24 0
45 Sz 52 Y*O 13 04 24.8675032320 -77 52 30.280923336   17.7     14.66 M2.5 28 0
46 Hn 24 Y*O 13 04 55.7191411392 -77 39 49.222352340           M0 31 0
47 Hn 25 Y*O 13 05 08.5232959920 -77 33 42.630661188           M2.5 23 0
48 Sz 53 Y*O 13 05 12.6752612232 -77 30 52.566390396   17.85 16.59     M1 31 0
49 Hen 3-854 Or* 13 05 20.6574078672 -77 39 01.506188880   13.88 12.40     K5 45 0
50 2MASS J13052169-7738102 Y*O 13 05 21.6550009440 -77 38 10.259255184           ~ 13 0
51 SSTc2d J130529.0-774140 Y*O 13 05 29.04 -77 41 40.1           ~ 11 0
52 NAME Cha J1305-7739 BD* 13 05 40.80 -77 39 58.2         22.16 L1 7 0
53 Sz 55 Y*O 13 06 30.5147352624 -77 34 00.166145700   18.90 17.49     M2 19 0
54 Sz 56 Y*O 13 06 38.7881087232 -77 30 35.274308688   18.53 17.08     M4 22 0
55 Sz 57 Y*O 13 06 56.5765655088 -77 23 09.640416696   19.56 17.70     M5 20 0
56 Sz 58 Em* 13 06 57.4252298184 -77 23 41.593041672   17.89 16.01     K5 32 0
57 V* BK Cha Or* 13 07 09.247848 -77 30 30.56004   16.11 14.58 14.41   K7 32 0
58 2MASS J13071806-7740529 Y*O 13 07 18.0439003536 -77 40 53.043429684         16.18 M4.5 19 0
59 NAME Sz 60W Y*O 13 07 22.3510937688 -77 37 22.664073396   17.35 15.77 15.96 13.45 M1e 10 0
60 NAME Sz 60E Y*O 13 07 23.3754539424 -77 37 23.233614528   18.16 16.80 16.13 13.60 M4e 8 0
61 PSCz Q13036-7644 Y*O 13 07 36.89 -77 00 09.7           ~ 39 1
62 Hn 26 Y*O 13 07 48.4988968944 -77 41 21.572667204           M2 23 0
63 V* BM Cha Or* 13 08 06.2695235808 -77 55 05.329818156   16.77 14.60     K5 55 0
64 2MASS J13082714-7743232 Y*O 13 08 27.1778458152 -77 43 23.297498148         16.55 M4.5 20 0
65 2MASS J13090987-7709437 Y*O 13 09 09.9088695936 -77 09 43.801176816       15.37 14.04 M0.5 12 0
66 2MASS J13091071-7709443 Y*O 13 09 10.71600 -77 09 44.3628       13.47 12.42 M1.5 8 0
67 Sz 62 Y*O 13 09 50.36808 -77 57 24.0228   16.99 15.55 14.838   M2.5 33 0
68 Sz 63 Y*O 13 10 04.1819222640 -77 10 44.849941680   15.2       M3 20 0
69 2MASS J13125238-7739182 Y*O 13 12 52.38 -77 39 18.3           M4.5 7 0
70 Sz 64 Y*O 13 14 03.7124279328 -77 53 07.576738116   16.3       M5 17 0
71 NAME Serpens Cloud SFR 18 29 49 +01 14.8           ~ 1100 2
72 NAME Gould Belt PoG ~ ~           ~ 874 1

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