A detailed study of the rotating toroids in G31.41+0.31 and G24.78+0.08

被引:113
作者
Beltrán, MT
Cesaroni, R
Neri, R
Codella, C
Furuya, RS
Testi, L
Olmi, L
机构
[1] INAF, Osservatorio Astrofis Arcetri, I-50125 Florence, Italy
[2] Inst Radio Astron Millimetr, F-38406 St Martin Dheres, France
[3] INAF, Ist Radioastron, Sez Firenze, I-50125 Florence, Italy
[4] CALTECH, Div Phys Math & Astron, Pasadena, CA 91125 USA
关键词
ISM; individual; G31.41+0.31; G24.78+0.08; ISM : molecules; radio lines : ISM; stars : formation;
D O I
10.1051/0004-6361:20042381
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We present the results of high angular resolution millimeter observations of gas and dust toward G31.41+0.31 and G24.78+0.08, two high-mass star forming regions where four rotating massive toroids have been previously detected. The CH3CN (12-11) emission of the toroids in G31.41+0.31 and core A1 in G24.78+0.08 has been modeled assuming that it arises from a disk-like structure seen edge-on, with a radial velocity field. For G31.41+0.31 the model properly fits the data for a velocity v(rot) ≃ 1.7 km s(-1) at the outer radius R-out ≃ 13400 AU and an inner radius R-inn ≃ 1340 AU, while for core A1 in G24.78+0.08 the best fit is obtained for vrot ≃ 2.0 km s(-1) at Rout ≃ 7700 AU and Rinn ≃ 2300 AU. Unlike the rotating disks detected around less luminous stars, these toroids are not undergoing Keplerian rotation. From the modeling itself, however, it is not possible to distinguish between constant rotation or constant angular velocity, since both velocity fields suitably fit the data. The best fit models have been computed adopting a temperature gradient of the type T ∝ R-3/4, with a temperature at the outer radius T-out ≃ 100 K for both cores. The M-dyn needed for equilibrium derived from the models is much smaller than the mass of the cores, suggesting that such toroids are unstable and undergoing gravitational collapse. The collapse is also supported by the (CH3CN)-C-13 or CH3CN line width measured in the cores, which increases toward the center of the toroids. The estimates of v(inf) and. M-acc are ≃ 2 km s(-1) and ∼ 3 x 10(-2) M ∼ yr(-1) for G31.41+0.31, and ∼ 1.2 km s(-1) and ∼ 9 x 10(-3) M-⊙ yr(-1) for G24.78+ 0.08 A1. Such large accretion rates could weaken the effect of stellar winds and radiation pressure and allow further accretion on the star. The values of T-rot and N-CH3CN, derived by means of the RD method, for both G31.41+0.31 and the sum of cores A1 and A2 ( core A of Codella et al. 1997, A&A, 325, 282) in G24.78+ 0.08 are in the range 132-164 K and 2-8 x 10(16) cm(-2). For G31.41+0.31, the most plausible explanation for the apparent toroidal morphology seen in the lower K transitions of CH3CN (12-11) is self-absorption, which is caused by the high optical depth and temperature gradient in the core.
引用
收藏
页码:901 / 925
页数:25
相关论文
共 42 条
[1]   SPECTRAL EVOLUTION OF YOUNG STELLAR OBJECTS [J].
ADAMS, FC ;
LADA, CJ ;
SHU, FH .
ASTROPHYSICAL JOURNAL, 1987, 312 (02) :788-806
[2]   Collapse of magnetized singular isothermal toroids. II. Rotation and magnetic braking [J].
Allen, A ;
Li, ZY ;
Shu, FH .
ASTROPHYSICAL JOURNAL, 2003, 599 (01) :363-379
[3]   Rotating disks in high-mass young stellar objects [J].
Beltrán, MT ;
Cesaroni, R ;
Neri, R ;
Codella, C ;
Furuya, RS ;
Testi, L ;
Olmi, L .
ASTROPHYSICAL JOURNAL, 2004, 601 (02) :L187-L190
[4]   Chemical evolution in preprotostellar and protostellar cores [J].
Bergin, EA ;
Langer, WD .
ASTROPHYSICAL JOURNAL, 1997, 486 (01) :316-328
[5]   On the formation of massive stars [J].
Bonnell, IA ;
Bate, MR ;
Zinnecker, H .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 1998, 298 (01) :93-102
[6]   The hot core around the low-mass protostar IRAS 16293-2422: Scoundrels rule! [J].
Cazaux, S ;
Tielens, AGGM ;
Ceccarelli, C ;
Castets, A ;
Wakelam, V ;
Caux, E ;
Parise, B ;
Teyssier, D .
ASTROPHYSICAL JOURNAL, 2003, 593 (01) :L51-L55
[7]  
Cesaroni R, 1999, ASTRON ASTROPHYS, V345, P949
[8]  
Cesaroni R, 1998, ASTRON ASTROPHYS, V331, P709
[9]   Anatomy of a high-mass star forming cloud: The G24.78+0.08 (proto)stellar cluster [J].
Cesaroni, R ;
Codella, C ;
Furuya, RS ;
Testi, L .
ASTRONOMY & ASTROPHYSICS, 2003, 401 (01) :227-242
[10]  
Cesaroni R, 2002, IAU SYMP, V12, P156