2005ApJ...624..832M


Query : 2005ApJ...624..832M

2005ApJ...624..832M - Astrophys. J., 624, 832-840 (2005/May-2)

The near-infrared size-luminosity relations for Herbig Ae/Be disks.

MONNIER J.D., MILLAN-GABET R., BILLMEIER R., AKESON R.L., WALLACE D., BERGER J.-P., CALVET N., D'ALESSIO P., DANCHI W.C., HARTMANN L., HILLENBRAND L.A., KUCHNER M., RAJAGOPAL J., TRAUB W.A., TUTHILL P.G., BODEN A., BOOTH A., COLAVITA M., GATHRIGHT J., HRYNEVYCH M., LE MIGNANT D., LIGON R., NEYMAN C., SWAIN M., THOMPSON R., VASISHT G., WIZINOWICH P., BEICHMAN C., BELETIC J., CREECH-EAKMAN M., KORESKO C., SARGENT A., SHAO M. and VAN BELLE G.

Abstract (from CDS):

We report the results of a sensitive K-band survey of Herbig Ae/Be disk sizes using the 85 m baseline Keck Interferometer. Targets were chosen to span the maximum range of stellar properties to probe the disk size dependence on luminosity and effective temperature. For most targets, the measured near-infrared sizes (ranging from 0.2 to 4 AU) support a simple disk model possessing a central optically thin (dust-free) cavity, ringed by hot dust emitting at the expected sublimation temperatures (Ts∼1000-1500 K). Furthermore, we find a tight correlation of disk size with source luminosity R∝L1/2 for Ae and late Be systems (valid over more than two decades in luminosity), confirming earlier suggestions based on lower quality data. Interestingly, the inferred dust-free inner cavities of the highest luminosity sources (Herbig B0-B3 stars) are undersized compared to predictions of the ``optically thin cavity'' model, likely because of optically thick gas within the inner AU.

Abstract Copyright:

Journal keyword(s): Accretion, Accretion Disks - Stars: Circumstellar Matter - Instrumentation: Interferometers - Radiative Transfer - Stars: Formation - Stars: Pre-Main-Sequence

Errata: erratum vol. 632, p. 689 (2005)

CDS comments: HD 143006 is a misprint for HD 143066

Simbad objects: 46

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Number of rows : 46
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 HD 26794 PM* 04 14 30.2993352984 +03 01 19.389478656   9.78   8.2   K3V 80 0
2 * 55 Per * 04 24 29.1553459416 +34 07 50.727850608   5.657 5.718     B8V 58 0
3 EM* LkHA 101 Em* 04 30 14.4355820328 +35 16 23.983198932   17.91 15.71 13.33   F 356 1
4 HD 29645 PM* 04 41 50.2562060352 +38 16 48.653780880   6.56   5.6   F9IV-V 135 0
5 V* AB Aur Ae* 04 55 45.8458932216 +30 33 04.292077032 7.20 7.16 7.05 6.96 6.70 A0Ve 1068 2
6 V* UX Ori Ae* 05 04 29.9878898040 -03 47 14.286732072 10.25 10.93 8.70 9.62 9.43 A4IVe 363 1
7 HD 33278 * 05 08 55.1129591904 -02 31 16.993236576   9.70 8.61     K0III 19 0
8 HD 36003 PM* 05 28 26.0955363191 -03 29 58.398928866 9.864 8.777 7.642 6.968 6.401 K5V 210 0
9 HD 36112 Ae* 05 30 27.5285630040 +25 19 57.076288752   8.57 8.27     A8Ve 469 0
10 HD 48286 PM* 06 42 05.2039866264 -15 12 54.912494952   7.51 6.96     F9VFe-0.5CH-0.4 41 0
11 HD 52919 PM* 07 02 42.9174539135 -06 47 57.214117747 10.45 9.442 8.351 7.708 7.18 K4V 86 0
12 V* Z CMa Ae* 07 03 43.1599411656 -11 33 06.209065836 10.51 9.99 8.80     B5/8eq+F5/7 581 3
13 HD 58461 PM* 07 25 08.3153856744 -13 45 07.117163244   6.20 5.78     F5VFe-0.8CH-0.5 90 0
14 HD 58647 Em* 07 25 56.0985504216 -14 10 43.548632256 6.81 6.92 6.85 6.73 6.73 B9IV 97 0
15 HD 60491 BY* 07 34 26.1676173360 -06 53 48.036803172 9.554 9.027 8.144 7.654 7.214 K1V 83 0
16 * 4 Pup * 07 45 56.8695645744 -14 33 49.698704304   5.342 5.026     F2V 66 0
17 HD 102667 * 11 49 09.2898924504 -46 22 04.323971244   10.03 8.95     K1III 4 0
18 * iot02 Lib PM* 15 13 19.1934600384 -19 38 51.273851316   6.190 6.066     A2V 39 0
19 HD 139909 * 15 41 15.9724611912 -13 58 13.141598520   6.91 6.86     B9.5V 25 0
20 HD 141107 * 15 48 22.5831555744 -28 47 20.849079300   8.07 7.69     F2V 34 0
21 HD 141569 Y*O 15 49 57.7482550392 -03 55 16.341617064 7.22 7.20 7.12 7.00 7.04 A2VekB9mB9(_lB) 543 0
22 HD 142666 TT* 15 56 40.0221861696 -22 01 40.005872148 9.41 9.37 8.82 8.31 8.01 F0V_sh 271 0
23 HD 143066 * 15 58 33.4211847120 -09 00 12.202786692   9.25 8.38     G2V 14 0
24 HD 144432 Ae* 16 06 57.9533126832 -27 43 09.760564056 8.47 8.53 8.19 7.82 7.53 A9/F0V 248 1
25 HD 144641 ** 16 07 44.6310604944 -21 24 43.535538468   8.88 7.99     G3V 23 0
26 HD 147550 * 16 22 38.9052134400 -02 04 47.519268672   6.288 6.241     B9V 114 0
27 HD 149149 Em* 16 33 51.0352586160 -24 17 25.948802112   9.34 8.64     G6V 17 0
28 HD 150193 Ae* 16 40 17.9243127240 -23 53 45.193372692 9.69 9.32 8.79 8.41   A3Va(e) 323 0
29 HD 157546 Be* 17 24 37.0406146128 -18 26 44.744857152   6.372 6.334     B9IIIe 51 0
30 HD 163296 Ae* 17 56 21.2881851168 -21 57 21.871819008 7.00 6.93 6.85 6.86 6.67 A3VaekA1mA1 1117 0
31 EM* MWC 297 Ae* 18 27 39.5265500160 -03 49 52.133050776 15.57 14.34 12.31 11.34   B1.5Ve 298 0
32 * 31 Sgr PM* 18 52 08.3747305800 -21 55 17.501880432   6.72 6.58     A3V 16 0
33 HD 181047 PM* 19 17 53.6965125528 +25 22 11.011329300   9.02   7.9   G8V 37 0
34 V* WW Vul Ae* 19 25 58.7494120560 +21 12 31.333658616 11.46 10.99 10.25 10.38 10.12 A2IVe 224 0
35 HD 184198 * 19 32 26.3553697560 +23 14 43.257198444   8.65 8.17     F7Vw 26 0
36 HD 192985 PM* 20 16 00.6155322192 +45 34 46.290085536   6.281 5.864     F5V: 89 0
37 BD+40 4124 Ae* 20 20 28.2413946720 +41 21 51.529070088 11.11 11.36 10.62 10.510   B2Ve 291 1
38 EM* MWC 349 ** 20 32 45.499080 +40 39 36.74124   15.88 13.15 12.13   Bep 802 0
39 EM* AS 442 Ae* 20 47 37.4657848584 +43 47 24.975739896 11.90 11.56 10.90 10.18 9.95 B8Ve 93 0
40 BD+42 3871 PM* 20 48 41.6448460704 +43 24 17.764166880   9.53 8.59     K0 3 0
41 HD 199178 Ro* 20 53 53.6520433056 +44 23 11.080108284   8.01 7.22     G5III-IV 214 1
42 HD 199998 * 20 58 58.5655706784 +47 38 57.503460732   9.89 8.40     K2III 17 0
43 HD 201456 PM* 21 08 17.1648492000 +43 44 51.738733320   8.35 7.88     F8V 32 0
44 BD+46 3471 Ae* 21 52 34.0992801288 +47 13 43.605617340 10.72 10.56 10.15     A0.5IIIer 210 1
45 BD+45 3792 * 22 05 17.6227942872 +46 29 00.629139984   10.80 9.45     K4 24 0
46 EM* MWC 1080 Ae* 23 17 25.5895018656 +60 50 43.444557384   13.24 11.85 11.251   B0eq 323 0

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