1999ApJS..122..221M


Query : 1999ApJS..122..221M

1999ApJS..122..221M - Astrophys. J., Suppl. Ser., 122, 221-242 (1999/May-0)

A mid-infrared imaging survey of proto-planetary nebula candidates.

MEIXNER M., UETA T., DAYAL A., HORA J.L., FAZIO G., HRIVNAK B.J., SKINNER C.J., HOFFMANN W.F. and DEUTSCH L.K.

Abstract (from CDS):

We present the data from a mid-infrared (MIR) imaging survey of 66 proto-planetary nebula candidates using two MIR cameras (MIRAC2 and Berkcam) at the NASA Infrared Telescope Facility and the United Kingdom Infrared Telescope. The goal of this survey is to determine the size, flux, and morphology of the MIR emission regions, which sample the inner regions of the circumstellar dust shells of proto-planetary nebulae. We imaged these proto-planetary nebulae with narrowband filters(Δλ/λ∼10%) at wavelengths of notable dust features. With our typical angular resolution of 1", we resolve 17 sources, find 48 objects unresolved, and do not detect one source. For several sources we checked optical and infrared associations and positions of the sources. In table format, we list the size and flux measurements for all of the detected objects and show figures of all of the resolved sources. The proto-planetary nebula candidate sample includes, in addition to the predominant proto-planetary nebulae, extreme asymptotic giant branch stars, young planetary nebulae, a supergiant, and a luminous blue variable. We find that dust shells that are cooler (T∼150 K) and brighter in the infrared are more easily resolved. Eleven of the seventeen resolved sources are extended and fall into one of two types of MIR morphological classes: core/elliptical or toroidal. Core/elliptical structures show unresolved cores with lower surface brightness elliptical nebulae. Toroidal structures show limb-brightened peaks suggesting equatorial density enhancements. We argue that core/ellipticals have denser dust shells than toroidals.

Abstract Copyright:

Journal keyword(s): Stars: Circumstellar Matter - Infrared: ISM: Continuum - ISM: Structure - Stars: AGB and Post-AGB - Stars: Mass Loss

VizieR on-line data: <Available at CDS (J/ApJS/122/221): table1.dat table3.dat refs.dat>

Simbad objects: 84

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Number of rows : 84
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 IRAS 00210+6221 C*? 00 23 50.861 +62 38 10.85           ~ 39 1
2 EM* GGA 2 LP* 00 50 05.9718580056 +64 45 35.046643752   12.406 11.545     Beq 25 0
3 * bet And PM* 01 09 43.92388 +35 37 14.0075 5.58 3.62 2.05 0.81 -0.19 M0+IIIa 555 1
4 RAFGL 190 C* 01 17 51.378 +67 13 53.34           C-rich 68 0
5 IRAS 01174+6110 LP* 01 20 44.2339814424 +61 26 15.794759220     18.3     ~ 18 0
6 OH 127.8-00.0 OH* 01 33 51.21048 +62 26 53.2032           O-rich 181 0
7 IRAS 02143+5852 pA* 02 17 57.8213027088 +59 05 52.037225772   14.986 13.972 13.628   F7Ie 21 0
8 IRAS 02152+2822 C* 02 18 06.0448778784 +28 36 45.348812928           C-rich 50 0
9 IRAS Z02229+6208 pA* 02 26 41.7882689568 +62 21 21.981286008   14.69 12.00 11.16 8.92 G8-K0_0-Ia: 61 0
10 HD 20041 * 03 15 47.9705004096 +57 08 26.243459556 6.61 6.52 5.79     A0Ia 139 1
11 * alf Tau LP? 04 35 55.23907 +16 30 33.4885 4.32 2.40 0.86 -0.37 -1.31 K5+III 1255 2
12 IRAS 04386+5722 IR 04 42 50.3 +57 27 51     12.25     ~ 9 1
13 IRAS 05089+0459 s*r 05 11 36.1536560160 +05 03 26.241197256   16.08 14.33 14.03   M3I 31 1
14 IRAS 05113+1347 pA* 05 14 07.7664787608 +13 50 28.200887160   14.786 12.574 11.663 10.26 G5I 70 0
15 IRAS 05341+0852 pA* 05 36 55.0511076432 +08 54 08.656315452   15.37 13.45 12.95 11.43 F5I 120 0
16 HD 44179 pA* 06 19 58.2185496 -10 38 14.706068 9.51 9.33 9.02     B9Ib/II 765 0
17 * alf CMa SB* 06 45 08.91728 -16 42 58.0171 -1.51 -1.46 -1.46 -1.46 -1.43 A0mA1Va 1530 0
18 IRAS 06530-0213 pA* 06 55 31.8205478808 -02 17 28.243142520   16.38 13.99 13.26   F5Ia 81 0
19 IRAS 07239-3325 LP? 07 25 51.7698106776 -33 31 19.793270784   14.492 12.787     ~ 8 0
20 V* U Mon RV* 07 30 47.4711645432 -09 46 36.757477488 8.22 7.00 5.82     G8/K0Ib/II 206 0
21 V* AI CMi pA* 07 35 41.1506935176 +00 14 57.993628992   9.83 8.31     G5Iab 60 0
22 * alf CMi SB* 07 39 18.11950 +05 13 29.9552 0.82 0.79 0.37 -0.05 -0.28 F5IV-V+DQZ 1864 0
23 OH 231.8+04.2 OH* 07 42 16.947 -14 42 50.20           M10III+A 533 0
24 IRAS 07430+1115 s*r 07 45 51.3968191368 +11 08 19.561606620   13.94 12.22 11.82 10.69 M2I 63 0
25 IRAS 08005-2356 AB* 08 02 40.7049577608 -24 04 42.588796404   12.454 11.139 10.930   F5Iae 95 0
26 IRAS 09032-3953 pA? 09 05 07.6311045101 -40 05 13.192739540           ~ 19 0
27 IRAS 09371+1212 pA* 09 39 53.96 +11 58 52.6           K7II/III 160 0
28 V* RW LMi C* 10 16 02.2777043904 +30 34 19.045098516       15.27   C4,3e 396 0
29 HD 89353 pA* 10 18 07.5899342712 -28 59 31.195183524   5.76 5.53     B9.5Ib/II 307 0
30 * mu. UMa SB* 10 22 19.7276765267 +41 29 58.337745272 6.53 4.64 3.05 1.76 0.80 M0III 311 0
31 * alf Ant PM* 10 27 09.1006393440 -31 04 04.004901300 7.33 5.70 4.25 3.15 2.36 K3III 77 0
32 V* AF Crt pA* 11 49 48.0368308800 -08 17 20.452690140   11.72 11.17 11.50 10.592 ~ 33 0
33 * del Vir RG* 12 55 36.2086240844 +03 23 50.888053818 6.76 4.97 3.38 1.86 0.53 M3+III 272 0
34 * alf Boo RG* 14 15 39.67207 +19 10 56.6730 2.46 1.18 -0.05 -1.03 -1.68 K1.5IIIFe-0.5 2318 1
35 * sig Lib Mi* 15 04 04.2148093680 -25 16 55.090486596 6.86 4.91 3.21 1.60 0.33 M2.5III 186 0
36 V* R CrB RC* 15 48 34.4154827352 +28 09 24.295852440 6.44 6.31 5.71 5.26 5.08 G0Iep 779 0
37 * alf Sco s*r 16 29 24.45970 -26 25 55.2094 4.08 2.75 0.91 -0.64 -1.87 M1.5Iab+B2Vn 746 0
38 IRAS 16342-3814 pA* 16 37 39.8691983808 -38 20 17.443998996           ~ 136 0
39 IRAS 16559-2957 pA* 16 59 08.2318866480 -30 01 40.247567184   13.578 13.016 13.059   F5I(e) 32 0
40 PN M 2-9 PN 17 05 37.96152 -10 08 32.5068           ~ 522 0
41 OH 345.05-01.86 pA* 17 12 22.79112 -42 25 10.4340           O-rich 35 0
42 IRAS 17106-3046 pA* 17 13 51.7976155656 -30 49 40.722991968       15.070   F5I 33 0
43 * alf Her ** 17 14 38.85818 +14 23 25.2262           M5Ib-II+G5III+F2V: 202 0
44 RAFGL 6815S pA* 17 18 19.8040606320 -32 27 21.547417932           G2I 148 0
45 IRAS 17245-3951 pA* 17 28 04.6523711554 -39 53 44.300653761           F6I 36 0
46 IRAS 17347-3139 PN 17 38 00.61 -31 40 55.2           ~ 59 1
47 HD 161796 pA* 17 44 55.4694563472 +50 02 39.482823336 8.00 7.68 7.21 6.77 6.51 F3Ib 326 0
48 RAFGL 5385 pA* 17 47 13.48944 -24 12 51.4404           F4I 74 0
49 * 89 Her pA* 17 55 25.1883476136 +26 02 59.968457664 5.36 5.70 5.36 5.06 4.94 F2Ibp 411 0
50 * gam Dra * 17 56 36.36988 +51 29 20.0242 5.630 3.760 2.230 1.08 0.23 K5III 562 1
51 OH 012.8+00.9 pA* 18 10 06.07608 -17 26 34.5480           O-rich 41 0
52 HD 335675 pA* 18 11 30.6621530616 +27 05 15.637762608   11.52 10.55     F3Ib 115 0
53 * eta Sgr LP? 18 17 37.6371989461 -36 45 42.084592381 6.37 4.67 3.11 1.55 0.23 M2III 144 0
54 EM* MWC 922 Be* 18 21 16.0519243728 -13 01 25.511760192     13.80 13.65   B[e] 92 0
55 HD 168625 s*b 18 21 19.5484021368 -16 22 26.075142156 10.15 9.78 8.37 8.76   B8Ia+ 279 2
56 OH 017.7-02.0 pA* 18 30 30.703 -14 28 57.04           O-rich 141 1
57 * alf Sct PM* 18 35 12.4271571798 -08 14 38.653839451 6.70 5.17 3.83 2.86 2.18 K3III 182 0
58 * alf Lyr dS* 18 36 56.33635 +38 47 01.2802 0.03 0.03 0.03 0.07 0.10 A0Va 2687 1
59 RAFGL 2333 C* 19 09 56.859 +09 26 51.43           C-rich 31 1
60 OH 044.8-02.3 OH* 19 21 36.6364189224 +09 27 56.688388992           O-rich 88 0
61 IRC +10420 pA* 19 26 48.0979492536 +11 21 16.758531216   13.98 11.66     F8Ia+e 477 0
62 Min 1-92 pA* 19 36 18.9295687968 +29 32 49.785288144 12.13 12.35 11.75 11.54   B0.5IV[e] 254 0
63 IRAS 19374+2359 PN 19 39 35.5440976632 +24 06 27.057100428           B3-6I 41 0
64 IRAS 19386+0155 pA* 19 41 08.2923311712 +02 02 31.208770140   12.32 11.20     F5Ib 42 0
65 * gam Aql * 19 46 15.5789542266 +10 36 47.731401477 5.93 4.23 2.72 1.65 0.87 K3II 440 0
66 IRAS 19477+2401 pA* 19 49 54.9088013304 +24 08 53.507444604       20.0   F4/7I 47 0
67 IRAS 19480+2504 pA? 19 50 08.2687941144 +25 12 00.936994068           C-rich 27 0
68 IRAS 20000+3239 LP* 20 01 59.5133268456 +32 47 32.799122916   16.13 13.39 11.80 10.32 ~ 82 0
69 V* V1027 Cyg pA* 20 02 27.3758569872 +30 04 25.489040916   10.85 8.65     G7Ia 64 0
70 IRAS 20028+3910 pA* 20 04 35.9834860344 +39 18 44.208893700           F3-7I 60 0
71 RAFGL 4259 OH* 20 06 22.73784 +27 02 10.6332           O-rich 39 0
72 IRC -10529 OH* 20 10 27.8731455576 -06 16 13.758742596         15.49 M: 141 0
73 * eps Cyg ** 20 46 12.6722768426 +33 58 13.182037125 4.370 3.520 2.480 1.73 1.19 K0III 506 0
74 HD 208141 * 21 51 48.3029338896 +64 53 59.664301944   7.85 6.84     K0 19 0
75 IRAS 21537+6435 pA? 21 55 04.41168 +64 49 54.1128           ~ 21 0
76 IRAS 22036+5306 pA* 22 05 30.28608 +53 21 32.7888           F4III 78 0
77 CPM 37 HII 22 16 10.2534929760 +52 21 21.888940392           ~ 33 1
78 V* V448 Lac pA* 22 24 31.4283564864 +43 43 10.978781916 11.22 10.61 9.69     F7I 111 0
79 IRC +60370 s*r 22 49 58.9665300864 +60 17 56.653704636       9.06   K2Ia 48 0
80 * bet Peg LP* 23 03 46.45746 +28 04 58.0336 6.05 4.09 2.42 0.92 -0.40 M2.5II-III 593 1
81 RAFGL 3068 C* 23 19 12.60744 +17 11 33.1332           C 270 0
82 IRAS 23304+6147 pA* 23 32 44.7858431592 +62 03 49.090372272   15.36 12.99 12.23 10.50 G2Ia 117 0
83 IRAS 23321+6545 pA* 23 34 22.48104 +66 01 51.6756           C-rich 45 0
84 IRAS 22575+6609 IR ~ ~           ~ 1 0

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