2013A&A...555A.103S


Query : 2013A&A...555A.103S

2013A&A...555A.103S - Astronomy and Astrophysics, volume 555A, 103-103 (2013/7-1)

Multiwavelength interferometric observations and modeling of circumstellar disks.

SCHEGERER A.A., RATZKA T., SCHULLER P.A., WOLF S., MOSONI L. and LEINERT C.

Abstract (from CDS):

We investigate the structure of the innermost region of three circumstellar disks around pre-main sequence stars HD142666, AS205N, and AS205S. We determine the inner radii of the dust disks and, in particular, search for transition objects where dust has been depleted and inner disk gaps have formed at radii of a few tenths of AU up to several AU. We performed interferometric observations with IOTA, AMBER, and MIDI in the infrared wavelength ranges 1.6-2.5µm and 8-13µm with projected baseline lengths between 25m and 102m. The data analysis was based on radiative transfer simulations in 3D models of young stellar objects (YSOs) to reproduce the spectral energy distribution and the interferometric visibilities simultaneously. Accretion effects and disk gaps could be considered in the modeling approach.
Result. from previous studies restricted the parameter space. The objects of this study were spatially resolved in the infrared wavelength range using the interferometers. Based on these observations, a disk gap could be found for the source HD142666 that classifies it as transition object. There is a disk hole up to a radius of Rin=0.30AU and a (dust-free) ring between 0.35AU and 0.80AU in the disk of HD142666. The classification of AS205 as a system of classical TTauri stars could be confirmed using the canonical model approach, i.e., there are no hints of disk gaps in our observations.

Abstract Copyright:

Journal keyword(s): infrared: stars - accretion, accretion disks - protoplanetary disks - instrumentation: interferometers - stars: general - radiative transfer

Simbad objects: 18

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Number of rows : 18
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2023
#notes
1 EM* LkHA 330 TT* 03 45 48.2805122064 +32 24 11.850978276   12.30 10.97     F7 137 0
2 V* RY Tau Or* 04 21 57.4092550080 +28 26 35.555316612 10.82 10.34 9.30 9.67 8.87 K1IV/Ve 696 1
3 V* EK Cha Or* 08 42 27.0967343784 -78 57 47.910415932   16.659 15.153 14.893   M5 73 0
4 * alf Crt PM* 10 59 46.4651557828 -18 17 55.630394216 6.14 5.16 4.07 3.27 2.72 K0IIIb 214 0
5 V* TW Hya TT* 11 01 51.9053285064 -34 42 17.033218380   11.94 10.50 10.626 9.18 K6Ve 1849 1
6 V* V918 Cen LP* 11 47 19.1412363000 -57 41 47.402548440   7.055 5.407     K5III 49 0
7 * nu. Lib * 15 06 37.5965113128 -16 15 24.546990276 8.70 6.78 5.20     K5-III 95 0
8 HD 134758 * 15 12 12.0109960848 -19 06 23.343817320   8.01 6.49     K4III 15 0
9 * ome Lup PM* 15 38 03.2069631593 -42 34 02.408479318 7.47 5.75 4.33 3.30 2.57 K3III 60 0
10 * 42 Lib * 15 40 16.8973226160 -23 49 05.101136148 7.80 6.29 4.96 4.00 3.32 K3-IIICN2 115 0
11 HD 142666 TT* 15 56 40.0221861696 -22 01 40.005872148 9.41 9.37 8.82 8.31 8.01 F0V_sh 259 0
12 HD 143033 * 15 58 26.6726492832 -13 26 33.957278304   8.73 7.11     M0III 19 0
13 HD 143900 * 16 03 54.7026524160 -24 43 34.728134052   7.621 6.211     K2/3III 23 0
14 V* V866 Sco Or* 16 11 31.345632 -18 38 25.96200   13.98 12.63 12.81   K0e+K5e 277 0
15 NAME Upper Sco Association As* 16 12 -23.4           ~ 1313 1
16 NAME Sco R1 As* 16 20 -22.0           ~ 10 0
17 NAME Ophiuchus Molecular Cloud SFR 16 28 06 -24 32.5           ~ 3532 1
18 * bet CrA * 19 10 01.7558032 -39 20 26.864359   5.281 4.095     K0II/IIICNIb 59 0

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2023.09.21-16:51:18

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