2021A&A...650A..43F


Query : 2021A&A...650A..43F

2021A&A...650A..43F - Astronomy and Astrophysics, volume 650A, 43-43 (2021/6-1)

KMOS study of the mass accretion rate from Class I to Class II in NGC 1333.

FIORELLINO E., MANARA C.F., NISINI B., RAMSAY S., ANTONIUCCI S., GIANNINI T., BIAZZO K., ALCALA J. and FEDELE D.

Abstract (from CDS):


Context. The mass accretion rate (Macc) is the fundamental parameter to understand the process of mass assembly that results in the formation of a low-mass star. This parameter has been largely studied in Classical T Tauri stars in star-forming regions with ages of ∼1-10Myr. However, little is known about the accretion properties of young stellar objects (YSOs) in younger regions and early stages of star formation, such as in the Class 0/I phases.
Aims. We present new near-infrared spectra of 17 Class I/Flat and 35 Class II sources located in the young (<1Myr) NGC 1333 cluster, acquired with the KMOS instrument at the Very Large Telescope. Our goal is to study whether the mass accretion rate evolves with age, as suggested by the widely adopted viscous evolution model, by comparing the properties of the NGC 1333 members with samples of older regions.
Methods. For the Class II sources in our sample, we measured the stellar parameters (SpT, AV, and L*) through a comparison of the IR spectra with a grid of non-accreting Class III stellar templates. We then computed the accretion luminosity by using the known correlation between Lacc and the luminosity of HI lines (Paβ and Brγ). For the Class I sample, where the presence of a large IR excess makes it impossible to use the same spectral typing method, we applied a procedure that allowed us to measure the stellar and accretion luminosity in a self-consistent way. Mass accretion rates Macc were then measured once masses and radii were estimated adopting suitable evolutionary tracks.
Results. The NGC 1333 Class II sources of our sample have Lacc∼10–4-1L and Macc∼10–11-10–7M/yr. We find a correlation between accretion and stellar luminosity in the form of log Lacc=(1.5±0.2)logL*+(-1.0±0.1), and a correlation between the mass accretion rate and stellar mass in the form of log Macc=(2.6±0.9)logM*+(-7.3±0.7). Both correlations are compatible within the errors with the older Lupus star-forming region, while only the latter is consistent with results from Chamaeleon I. The Class I sample shows larger accretion luminosities (∼10–2-102L) and mass accretion rates (∼10–9-10–6M/yr) with respect to the Class II stars of the same cloud. However, the derived mass accretion rates are not sufficiently high to build up the inferred stellar masses, assuming steady accretion during the Class I lifetime. This suggests that the sources are not in their main accretion phase and that most of their mass has already been accumulated during a previous stage and/or that the accretion is an episodic phenomenon. We show that some of the targets originally classified as Class I through Spitzer photometry are in fact evolved or low accreting objects. This evidence can have implications for the estimated protostellar phase lifetimes.
Conclusions. The accretion rates of our sample are larger in more embedded and early stage YSOs. Further observations of larger samples in young star-forming regions are needed to determine if this is a general result. In addition, we highlight the importance of spectroscopic surveys of YSOs to confirm their classification and perform a more correct estimate of their lifetime.

Abstract Copyright: © ESO 2021

Journal keyword(s): accretion - accretion disks - protoplanetary disks - stars: low-mass - stars: protostars - stars: pre-main sequence - stars: variables: T Tauri - Herbig Ae/Be

VizieR on-line data: <Available at CDS (J/A+A/650/A43): stars.dat list.dat fits/*>

Simbad objects: 89

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Number of rows : 89
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 2MASS J03283875+3118068 Y*O 03 28 38.754 +31 18 06.83           ~ 14 0
2 2MASS J03283968+3117321 Y*O 03 28 39.680 +31 17 32.13           ~ 24 1
3 2MASS J03284323+3110425 Y*O 03 28 43.23096 +31 10 42.5964           ~ 19 0
4 2MASS J03284325+3117330 Y*O 03 28 43.2624763920 +31 17 33.138111588     17.78 16.45 15.07 K7.0 57 1
5 2MASS J03284407+3120528 Y*O 03 28 44.0787175584 +31 20 52.824640200           M7.5 23 0
6 2MASS J03284764+3124061 Y*O 03 28 47.6388577008 +31 24 06.091635168           M4.0 24 0
7 2MASS J03284782+3116552 Y*O 03 28 47.8278036552 +31 16 55.188633828           M8.0 35 0
8 2MASS J03285105+3116324 Y*O 03 28 51.0662927448 +31 16 32.503719144           M4.0 32 0
9 ATO J052.2133+31.3318 Y*O 03 28 51.1931459388 +31 19 54.821949927           K7.0 39 0
10 2MASS J03285129+3117397 Y*O 03 28 51.291 +31 17 39.79           ~ 26 0
11 2MASS J03285213+3115471 Y*O 03 28 52.1389654200 +31 15 47.212652304           M7.0 30 0
12 EM* LkHA 325 TT* 03 28 52.1803895568 +30 45 05.576777172 15.63 14.71 13.43     K5:e 49 0
13 ASR 46 Y*O 03 28 52.9119749544 +31 16 26.538089376           M6V 33 0
14 2MASS J03285392+3118092 Y*O 03 28 53.92752 +31 18 09.2808           K7.0 34 0
15 ASR 42 Y*O 03 28 54.0810046752 +31 16 54.335516196       18.6   M6.5V 34 0
16 2MASS J03285461+3116512 Y*O 03 28 54.6195638064 +31 16 51.237210540       18.5   M1.0 37 0
17 2MASS J03285505+3116287 Y*O 03 28 55.0668013800 +31 16 28.839735984       19.7   M3.0 27 0
18 [JCC87] IRAS 2A Y*O 03 28 55.55 +31 14 36.7           ~ 446 3
19 2MASS J03285663+3118356 Y*O 03 28 56.6379056568 +31 18 35.598810888           M1.5 52 0
20 2MASS J03285694+3116222 Y*O 03 28 56.9552105184 +31 16 22.342093896       18.2   M2.5 40 0
21 ASR 17 Y*O 03 28 57.1676383896 +31 15 34.509523824           M7.5V 23 0
22 BD+30 547 Y*O 03 28 57.2114503248 +31 14 19.076151444   10.73 9.98 9.1   G4V 105 1
23 2MASS J03285769+3119481 Y*O 03 28 57.6951247200 +31 19 48.025172892           M3.5 22 0
24 2MASS J03285809+3118038 Y*O 03 28 58.1013227063 +31 18 03.753023299     17.8     M0.5 42 0
25 2MASS J03285824+3122021 Y*O 03 28 58.2489592896 +31 22 02.105061456           M6 20 0
26 2MASS J03285842+3122175 Y*O 03 28 58.420 +31 22 17.54           ~ 37 0
27 ASR 106 Y*O 03 28 59.30640 +31 15 48.5172           K2.0 55 0
28 EM* LkHA 353 Or* 03 28 59.5499346456 +31 21 46.711115676           M3.1 34 0
29 2MASS J03290149+3120208 Y*O 03 29 01.492 +31 20 20.84           ~ 34 0
30 2MASS J03290279+3122172 Y*O 03 29 02.791 +31 22 17.29           M9.3 14 0
31 2MASS J03290313+3122381 Y*O 03 29 03.1361451264 +31 22 38.079631200           M2.5 25 0
32 2MASS J03290320+3125451 LM* 03 29 03.2128563360 +31 25 44.931401652           M7.1 14 0
33 2MASS J03290332+3123148 Y*O 03 29 03.32 +31 23 14.8           ~ 23 0
34 [SVS76] NGC 1333 13A2 IR 03 29 03.374 +31 16 01.87           ~ 17 0
35 V* V512 Per Or* 03 29 03.7578170808 +31 16 03.947525688           M3.5 379 0
36 2MASS J03290386+3121487 Or* 03 29 03.8590044645 +31 21 48.679245240     17.0     K6.0 40 0
37 NAME HH 7-11 FIR 03 29 03.9 +31 16 06           ~ 347 0
38 [SDA2014] West40 Y*O 03 29 04.06 +31 14 46.5           ~ 60 0
39 2MASS J03290413+3056127 Y*O 03 29 04.1332214280 +30 56 12.799086612           M6.1 16 0
40 SSTc2d J032904.6+312206 Y*? 03 29 04.64 +31 22 05.7           ~ 3 0
41 ASR 105 LM* 03 29 04.662 +31 16 59.15           M6 21 0
42 2MASS J03290472+3111348 Y*O 03 29 04.729 +31 11 34.90           ~ 17 0
43 2MASS J03290493+3120385 Y*O 03 29 04.936 +31 20 38.55           ~ 14 0
44 2MASS J03290506+3120377 Y*? 03 29 05.06232 +31 20 37.7880           ~ 9 0
45 SSTc2d J032905.1+312036 Y*? 03 29 05.18 +31 20 36.9           ~ 5 0
46 ASR 7 Y*O 03 29 05.75376 +31 16 39.6948           A3 32 0
47 2MASS J03290604+3030387 Y*? 03 29 06.0706821912 +30 30 39.053564244           ~ 7 0
48 2MASS J03290631+3113464 Y*O 03 29 06.318 +31 13 46.42           ~ 17 0
49 [LAL96] 213 Y*O 03 29 07.739 +31 21 57.52           ~ 60 0
50 2MASS J03290794+3122515 Y*O 03 29 07.9451430600 +31 22 51.518564724           M2.5 22 0
51 2MASS J03290895+3122562 Y*O 03 29 08.95344 +31 22 56.2656           ~ 18 0
52 2MASX J03290896+3121323 Y*O 03 29 08.967 +31 21 32.31           ~ 6 0
53 2MASS J03290907+3121291 Y*O 03 29 09.075 +31 21 29.10           ~ 11 0
54 2MASS J03290908+3123056 Y*O 03 29 09.0836580528 +31 23 05.615255976           ~ 13 0
55 2MASS J03290933+3121042 Y*O 03 29 09.330 +31 21 04.20           ~ 16 0
56 2MASS J03290964+3122564 Y*O 03 29 09.6424749933 +31 22 56.397116576     17.0     M3.1 30 0
57 2MASS J03291046+3123348 Y*O 03 29 10.46016 +31 23 34.8396           ~ 18 0
58 [JCC87] IRAS 4A Y*O 03 29 10.49 +31 13 30.8           ~ 699 1
59 ASR 23 Y*O 03 29 10.8224321760 +31 16 42.675444408           M0- 21 0
60 SSTc2d J032911.0+311826 Y*? 03 29 10.99 +31 18 26.0           ~ 6 0
61 NGC 1333 OpC 03 29 11.3 +31 18 36           ~ 1424 1
62 2MASS J03291188+3121271 Y*O 03 29 11.883 +31 21 27.13           ~ 16 0
63 NAME IRAS 4B1 South Y*O 03 29 12.06 +31 13 01.7           ~ 33 1
64 NAME IRAS 4B1 North Y*O 03 29 12.06 +31 13 05.4           ~ 13 0
65 2MASS J03291294+3118146 Y*O 03 29 12.945 +31 18 14.61           ~ 38 1
66 2MASS J03291312+3122529 Y*O 03 29 13.1278616784 +31 22 52.843160064           M3.0 18 0
67 [JCC87] IRAS 4C Y*O 03 29 13.54 +31 13 58.2           ~ 102 1
68 2MASS J03291433+3114441 Y*? 03 29 14.333 +31 14 44.11           ~ 10 0
69 2MASS J03291659+3123495 Y*O 03 29 16.5959397096 +31 23 49.484861880           M3.0 18 0
70 2MASS J03291667+3116182 Y*O 03 29 16.6783996776 +31 16 18.138707760           M3.5 25 0
71 MBO 79 Y*O 03 29 16.8129534984 +31 23 25.188242064           M2.5V 16 0
72 SSTYSV J032917.11+312745.5 cor 03 29 17.17 +31 27 46.5           ~ 40 0
73 SSTc2d J032917.5+312748 Y*? 03 29 17.50 +31 27 48.3           ~ 5 0
74 EM* LkHA 270 TT* 03 29 17.6758022904 +31 22 44.892332544   16.344 14.639 13.994   K2/3IIIe 84 0
75 ASR 80 Y*O 03 29 17.7631219248 +31 19 48.137840652           M6.5V 17 0
76 SSTc2d J032918.3+312320 Y*O 03 29 18.26 +31 23 19.9           ~ 23 1
77 EM* LkHA 354 Y*O 03 29 18.7266187427 +31 23 25.391102685     15.05     K4IVe 41 0
78 2MASS J03292003+3124076 Y*O 03 29 20.036 +31 24 07.65           ~ 34 1
79 HH 17 Y*O 03 29 20.4245077872 +31 18 34.234290072     16.38     K6.0 57 0
80 2MASS J03292155+3121104 Y*O 03 29 21.5557894333 +31 21 10.409454948           M4.5 30 0
81 EM* LkHA 271 Or* 03 29 21.8747728752 +31 15 36.242125668   14.0 14.3     K4.0 68 0
82 EM* LkHA 355 Y*O 03 29 23.1507312768 +31 20 30.307187076           M4.5 31 0
83 ASR 79 Y*O 03 29 24.0886223107 +31 19 57.383186997           M2.5V 52 0
84 2MASS J03292978+3121027 Y*O 03 29 29.7853459200 +31 21 02.537459208           M4.5 22 0
85 NAME Perseus Cloud SFR 03 35.0 +31 13           ~ 1329 0
86 IC 348 OpC 03 44 31.7 +32 09 32           ~ 1378 1
87 IC 438 Sy1 05 53 00.0793932408 -17 52 34.051147932   12.75   11.45 12.2 ~ 71 0
88 NAME Cha 1 MoC 11 06 48 -77 18.0           ~ 1141 1
89 NAME Ophiuchus Molecular Cloud SFR 16 28 06 -24 32.5           ~ 3567 1

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2023.11.29-22:08:05

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