2017A&A...606A..88T


Query : 2017A&A...606A..88T

2017A&A...606A..88T - Astronomy and Astrophysics, volume 606A, 88-88 (2017/10-1)

Physical properties of dusty protoplanetary disks in Lupus: evidence for viscous evolution?

TAZZARI M., TESTI L., NATTA A., ANSDELL M., CARPENTER J., GUIDI G., HOGERHEIJDE M., MANARA C.F., MIOTELLO A., VAN DER MAREL N., VAN DISHOECK E.F. and WILLIAMS J.P.

Abstract (from CDS):

Context. The formation of planets strongly depends on the total amount as well as on the spatial distribution of solids in protoplanetary disks. Thanks to the improvements in resolution and sensitivity provided by ALMA, measurements of the surface density of mm-sized grains are now possible on large samples of disks. Such measurements provide statistical constraints that can be used to inform our understanding of the initial conditions of planet formation.
Aims. We aim to analyze spatially resolved observations of 36 protoplanetary disks in the Lupus star forming complex from our ALMA survey at 890µm, aiming to determine physical properties such as the dust surface density, the disk mass and size, and to provide a constraint on the temperature profile.
Methods. We fit the observations directly in the uv-plane using a two-layer disk model that computes the 890µm emission by solving the energy balance at each disk radius.
Results. For 22 out of 36 protoplanetary disks we derive robust estimates of their physical properties. The sample covers stellar masses between ∼0.1 and ∼2M, and we find no trend in the relationship between the average disk temperatures and the stellar parameters. We find, instead, a correlation between the integrated sub-mm flux (a proxy for the disk mass) and the exponential cut-off radii (a proxy of the disk size) of the Lupus disks. Comparing these results with observations at similar angular resolution of Taurus-Auriga and Ophiuchus disks found in literature and scaling them to the same distance, we observe that the Lupus disks are generally fainter and larger at a high level of statistical significance. Considering the 1-2Myr age difference between these regions, it is possible to tentatively explain the offset in the disk mass-size relation with viscous spreading, however with the current measurements other mechanisms cannot be ruled out.

Abstract Copyright: © ESO, 2017

Journal keyword(s): protoplanetary disks - submillimeter: general - stars: pre-main sequence - stars: pre-main sequence

Simbad objects: 54

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Number of rows : 54
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 Cha 1 MoC 11 06 48 -77 18.0           ~ 1154 1
3 Sz 65 Or* 15 39 27.7716659160 -34 46 17.211087984   13.11 12.13 11.33 10.76 K7 100 0
4 Lupus 1 Cld 15 43 02.1 -34 09 06           ~ 286 0
5 2MASS J15450634-3417378 Y*? 15 45 06.34296 -34 17 37.8312           ~ 26 0
6 2MASS J15450887-3417333 Y*O 15 45 08.8742780880 -34 17 33.454839372       18.73   M5.5 45 0
7 CD-33 10685 Or* 15 45 12.8678037432 -34 17 30.644403036 12.47 11.56 10.224 9.60 8.685 K3Ve 272 1
8 V* HW Lup Or* 15 45 17.4118414392 -34 18 28.286447220   17.41 16.25     M1 74 0
9 V* GW Lup Or* 15 46 44.7290527536 -34 30 35.677420056   13.8       M1.5e 143 0
10 THA 15-5 TT* 15 47 56.9427182064 -35 14 34.796420412   14.5 16.2     K7e 85 0
11 THA 15-12 Or* 15 56 09.2066646912 -37 56 06.126118692   13.12 11.93 11.45   M0e 422 0
12 V* RU Lup TT* 15 56 42.3108692112 -37 49 15.473946900 9.27 10.07 9.60     K7/M0e 469 0
13 Lupus 2 MoC 15 57 08 -37 47.1           ~ 114 1
14 Sz 84 TT* 15 58 02.5198436808 -37 36 02.729938536   14.3       M5.0e 72 0
15 WRAY 15-1400 TT* 15 59 16.4717314824 -41 57 10.300018176   13.5 12.0     K7IVe 97 0
16 V* RY Lup Or* 15 59 28.3864710696 -40 21 51.249496176   12.62 9.90     G8/K1IV-V 223 0
17 UCAC3 96-205744 Y*O 16 00 00.6018563304 -42 21 56.821951152   17.29 15.85 15.25 13.43 M4.5 37 0
18 UCAC3 96-205752 Y*O 16 00 02.3583827328 -42 22 14.600258148   16.86 15.46 14.98 13.59 M4 47 0
19 2MASS J16002612-4153553 Y*O 16 00 26.1203153232 -41 53 55.371567156   16.57 16.45 15.70 13.80 M5.25 35 0
20 V* MY Lup TT* 16 00 44.5202267160 -41 55 30.935126748   12.64 12.17 11.06   K0 111 0
21 2MASS J16011549-4152351 Y*O 16 01 15.49224 -41 52 35.1912           ~ 34 0
22 Lupus 4 MoC 16 03 12.4 -42 07 43           ~ 152 0
23 Sz 133 Y*O 16 03 29.3848659360 -41 40 01.765426548   17.77 16.60 15.78 15.04 K2 48 0
24 2MASS J16070384-3911113 Y*O 16 07 03.84336 -39 11 11.3208       18.79 16.80 M4.5 42 0
25 2MASS J16070854-3914075 LM* 16 07 08.5530917712 -39 14 07.494035352   17.85   18.67 17.86 M1.75 39 0
26 THA 15-21 TT* 16 07 10.0694468880 -39 11 03.260683896   15.28 13.70 13.70 12.49 K7-M0 72 0
27 2MASS J16073773-3921388 Y*O 16 07 37.7327699304 -39 21 38.745260928   18.38 17.4 17.12 15.68 M5.5e 39 0
28 2MASS J16075475-3915446 Y*O 16 07 54.75096 -39 15 44.6328       21.91 19.92 ~ 22 0
29 2MASS J16080017-3902595 Y*O 16 08 00.1718615064 -39 02 59.504573976   16.94 17.01 16.72 14.31 M5.5e 45 0
30 2MASS J16081497-3857145 Y*O 16 08 14.9753942112 -38 57 14.409165492       18.93 17.42 4.75 42 0
31 V* V1279 Sco Or* 16 08 22.4935277520 -39 04 46.427612052   14.99 13.66 11.70 11.21 M0.4 119 1
32 THA 15-26 Y*O 16 08 25.7633674272 -39 06 01.247043888   16.62 15.43 14.97 13.12 M5 66 0
33 IRAS 16051-3820 Y*O 16 08 30.6994064064 -38 28 26.846324004   11.89 11.15 10.67   K2 69 0
34 THA 15-30 TT* 16 08 30.8142130416 -39 05 48.837746436   15.2 15.25 13.96 13.57 M5 61 0
35 Sz 106 Y*O 16 08 39.7597402848 -39 06 25.321212288   15.1   15.00 14.66 M2.5 47 0
36 NAME Sz 108B Y*O 16 08 42.8838783888 -39 06 14.692839804       17.71 14.39 M5 37 0
37 IRAS 16054-3857 Y*O 16 08 49.3987083072 -39 05 39.447341844   16.76 17.71 15.89 14.24 M4.5 53 0
38 V* V1192 Sco Or* 16 08 51.4348063536 -39 05 30.460358652     21.9 18.97 18.18 M5 72 0
39 UCAC3 102-194910 Y*O 16 08 53.2420957464 -39 14 40.160339952   17.53 16.35 15.35 13.52 M3 49 1
40 2MASS J16085373-3914367 Y*O 16 08 53.7357629040 -39 14 36.799256184       21.73 18.76 M5.5 37 0
41 THA 15-33 TT* 16 08 54.6849382512 -39 37 43.145069664   15.34 13.98 13.29   M1IVe 92 0
42 2MASS J16085529-3848481 Y*O 16 08 55.2899613672 -38 48 48.174613416   17.36   17.24 15.24 M6.5 36 1
43 Sz 112 Y*O 16 08 55.5289090032 -39 02 33.941081832   16.62 15.39 14.78 12.93 M6 67 0
44 THA 15-34 Y*O 16 08 57.8026653048 -39 02 22.853868252   17.46 16.50 16.64 14.65 M6 59 0
45 2MASS J16090141-3925119 Y*O 16 09 01.4148377304 -39 25 11.923332420   16.92 15.31 15.04 13.48 M4 51 0
46 THA 15-35 Or* 16 09 01.8486544824 -39 05 12.414717240   15.33 14.12 14.35 12.54 M5.5 108 0
47 2MASS J16092697-3836269 Y*O 16 09 26.9795990952 -38 36 26.933727420   17.55   16.31 14.74 M4.5 32 0
48 Lupus 3 SFR 16 09.6 -39 03           ~ 323 0
49 Sz 118 Y*O 16 09 48.6562295568 -39 11 16.847425032   18.32 16.90 16.61 15.00 K6 65 0
50 2MASS J16102955-3922144 Y*O 16 10 29.5517478000 -39 22 14.451017844   17.51 16.31 15.79 13.90 M4.5 52 0
51 NAME Upper Sco Association As* 16 12 -23.4           ~ 1369 1
52 UCAC3 104-204438 Y*O 16 12 43.7499349656 -38 15 03.075603264   15.00 13.44 13.39 11.61 M1 44 0
53 2MASS J16134410-3736462 Y*O 16 13 44.1007544088 -37 36 46.261518840   17.97   16.37 14.66 M5 26 0
54 NAME Ophiuchus Molecular Cloud SFR 16 28 06 -24 32.5           ~ 3631 1

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