2018A&A...618A..21M


Query : 2018A&A...618A..21M

2018A&A...618A..21M - Astronomy and Astrophysics, volume 618A, 21-21 (2018/1-0)

The evolutionary nature of RV Tauri stars in the SMC and LMC.

MANICK R., VAN WINCKEL H., KAMATH D., SEKARAN S. and KOLENBERG K.

Abstract (from CDS):

Context. Based on their stellar parameters and the presence of a mid-IR excess due to circumstellar dust, RV Tauri stars have been classified as post-AGB stars. Our recent studies, however, reveal diverse spectral energy distributions (SEDs) among RV Tauri stars, suggesting they may occupy other evolutionary channels as well.
Aims. The aim of this paper is to present the diverse SED characteristics of RV Tauri stars and investigate their evolutionary nature as a function of their SEDs.
Methods. We carried out a systematic study of RV Tauri stars in the SMC and LMC because of their known distances and hence luminosities. Their SEDs were classified into three groups: dusty (disc-type), non-dusty (non-IR), and uncertain. A period-luminosity-colour (PLC) relation was calibrated. The luminosities from the PLC were complemented with those found using their SEDs and the stars were placed on a Hertzsprung-Russell diagram (HRD). I-band time series were used to search for period changes via (O-C) analyses to identify period changes.
Results. The four main results from this study are: (1) RV Tauri stars with a clear IR excess have disc-type SEDs, which indicates that the dust is trapped in a stable disc. Given the strong link between disc-type SEDs and binarity in the Galaxy, we postulate that these are binaries as well. These cover a range of luminosities and we argue that the more luminous binaries are post-AGB stars while the lower luminosity binaries are likely post-red giant branch (post-RGB) stars. (2) Two of these objects have variable mean brightness with periods of 916 and 850 days, respectively, caused by variable extinction during orbital motion. (3) Non-dusty RV Tauri stars and objects with an uncertain SED evolve such that the circumstellar dust has dispersed. If they are single stars, they are post-AGB objects of low initial mass (<1.25M), while if they are binaries, the low-luminosity portion of the sample are likely post-RGB stars. (4) We find that RV Tauri stars with dust are on average more luminous than the rest of the sample.

Abstract Copyright: © ESO 2018

Journal keyword(s): stars: AGB and post-AGB - binaries: general - stars: chemically peculiar - stars: Population II - stars: evolution - techniques: photometric

Simbad objects: 74

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Number of rows : 74
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 SV* HV 1369 cC* 00 42 57.4929151752 -73 07 14.622202380   14.910 14.356 14.113 13.572 ~ 18 0
2 OGLE SMC-T2CEP-12 RV* 00 45 19.6846026408 -73 20 13.588560492     16.369   15.415 ~ 7 0
3 OGLE SMC-T2CEP-18 RV* 00 51 07.2201229320 -73 41 33.353088216 16.50 16.19 15.77   14.63 ~ 12 0
4 NAME SMC G 00 52 38.0 -72 48 01   2.79 2.2     ~ 11145 1
5 OGLE SMC-T2CEP-19 RV* 00 53 27.6969856104 -73 38 09.530956212     15.064   14.481 ~ 6 0
6 SV* HV 1586 RV* 00 53 35.9738194092 -72 34 21.887751683   16.61 15.890   14.894 ~ 8 0
7 SV* HV 1647 RV* 00 55 20.5764040152 -73 21 38.013123744   15.11 15.308   14.511 ~ 9 0
8 SV* HV 12140 cC* 00 57 38.0984932248 -72 18 12.094779564   15.300 14.490 14.115 13.622 ~ 12 0
9 Dachs SMC 3-7 RV* 01 13 19.0675410288 -73 18 07.878610476 15.85 16.60 16.068 15.68 15.353 ~ 8 0
10 OGLE SMC-T2CEP-43 RV* 01 23 53.0572266096 -72 16 45.907802832     16.342   15.398 ~ 7 0
11 V* TX Per RV* 02 48 00.4851095952 +36 58 01.683592068   12.17 9.81 9.71   G5-K0e 31 0
12 NAME Magellanic Clouds GrG 03 00 -71.0           ~ 7062 0
13 V* TW Cam pA* 04 20 47.6363454312 +57 26 28.522779504 12.12 11.42 10.08 9.29   G8Ib 71 0
14 OGLE LMC-T2CEP-198 RV* 04 39 35.2701615720 -69 33 28.904711148     16.474   15.271 ~ 8 0
15 OGLE LMC145.6 3272 RV* 04 43 05.5327445088 -66 49 36.185790360     14.953   14.166 ~ 5 0
16 V* RV Tau RV* 04 47 06.7239850584 +26 10 45.532913268   11.00 9.80     K3Ibe 279 1
17 [KDM2001] 547 C* 04 48 08.0451382824 -69 51 14.400554868     16.38 14.463   C 4 0
18 SV* HV 12455 RV* 04 48 08.3362113216 -69 51 14.162952852     15.796   14.739 ~ 7 0
19 OGLE LMC132.7 12075 RV* 04 54 38.7084820272 -67 30 12.089826756     14.789   14.089 ~ 6 0
20 OGLE LMC136.2 15650 RV* 04 55 35.3924702352 -69 54 04.236221592     15.103   14.312 ~ 7 0
21 OGLE LMC-T2CEP-15 RV* 04 55 43.2642672360 -67 51 09.787079088 17.31 16.23 14.93 14.28 14.061 G2-8(R)Ibe: 26 0
22 OGLE LMC-T2CEP-16 RV* 04 55 45.9693718392 -69 07 46.240658472     15.681 15.494 15.458 ~ 8 0
23 OGLE LMC126.3 8347 RV* 05 01 38.8007761320 -68 35 18.950289000     15.102   14.042 ~ 7 0
24 SV* HV 2281 RV* 05 03 04.9906534080 -68 40 24.669726024 15.655 15.609 15.446 14.80 14.432 F7-9Ibpe 22 0
25 SV* HV 2275 RV* 05 03 56.2854335040 -67 27 24.821756064 16.452 15.767 15.041 14.711 13.972 ~ 19 0
26 LHA 120-S 79 RV* 05 04 44.8488808272 -68 58 31.543575276   13.88 13.77 13.99 13.658 B2IIIe 12 0
27 SV* HV 5600 RV* 05 06 34.0771683216 -69 30 03.617353800     14.787   13.729 ~ 8 0
28 OGLE LMC-T2CEP-50 RV* 05 09 26.1377940336 -68 50 04.928089416     15.661   14.964 ~ 10 0
29 OGLE LMC-T2CEP-51 RV* 05 09 41.9228858880 -68 51 24.901151112     15.440   14.569 ~ 9 0
30 SV* HV 2351 RV* 05 11 15.1741718424 -67 56 00.482399412     15.078   14.262 ~ 11 0
31 SV* HV 13025 RV* 05 11 33.5025276336 -68 35 53.785951116     16.594   15.511 ~ 15 0
32 OGLE LMC-T2CEP-200 RV* 05 13 56.4545136288 -69 31 58.411409088 19.350 16.029 16.124 15.660 15.092 ~ 13 0
33 OGLE LMC-T2CEP-65 RV* 05 14 00.7591479384 -68 57 56.866359492     15.611   14.699 ~ 9 0
34 SV* HV 915 RV* 05 14 18.1109835264 -69 12 34.872203808 15.837 14.924 14.552 13.96 13.853 F7-9Ibpe 29 0
35 SV* HV 925 RV* 05 16 16.0628055144 -69 43 36.911601948     15.728   14.568 ~ 9 0
36 SV* HV 2423 RV* 05 16 47.4341880600 -69 44 15.087084972     15.175 14.54 14.341 F3 17 0
37 OGLE LMC-T2CEP-82 RV* 05 16 55.3320101592 -71 41 41.446991436     16.065 15.127 14.982 ~ 9 0
38 SV* HV 2444 RV* 05 18 45.4623502872 -69 03 21.718940544 15.498 15.692 14.794 14.41 14.298 F2-4Ibpe 20 0
39 OGLE LMC-T2CEP-104 RV* 05 21 49.0978457232 -70 04 34.336307172 17.499 16.003 15.972 14.97 14.872 ~ 20 0
40 OGLE LMC105.4 44835 RV* 05 21 49.101 -70 46 01.39     16.18 15.348 15.167 ~ 11 0
41 OGLE LMC102.2 17387 RV* 05 22 11.2889955456 -68 11 31.352453124     15.477   14.746 ~ 7 0
42 OGLE LMC-T2CEP-203 RV* 05 22 33.7953243144 -69 38 08.532526956     16.51 15.86 15.395 ~ 11 0
43 SV* HV 2479 RV* 05 22 58.3558094712 -69 26 20.985945504     14.749   14.065 F6 12 0
44 NAME LMC G 05 23 34.6 -69 45 22     0.4     ~ 17428 0
45 OGLE LMC-T2CEP-115 RV* 05 23 43.5396163320 -69 32 06.932838192     16.651 15.97 15.593 ~ 13 0
46 SV* HV 5829 RV* 05 25 19.4953517232 -70 54 09.818194536 16.310 15.450 14.973 14.800 14.276 G0Ib 16 0
47 OGLE LMC-T2CEP-125 RV* 05 27 39.1685409672 -71 47 56.932841364     15.924   14.934 ~ 7 0
48 OGLE LMC-T2CEP-129 RV* 05 28 54.5968069176 -69 52 41.171968704     14.813   14.096 ~ 11 0
49 OGLE LMC-T2CEP-135 RV* 05 29 38.5049487312 -69 15 12.223410552     16.162 15.26 15.194 ~ 14 0
50 SV* HV 2635 RV* 05 31 50.9978859696 -69 11 46.356217296 14.745 14.781 14.299 14.03 13.862 F4-G1Ibpe 22 0
51 OGLE LMC-T2CEP-149 RV* 05 32 54.4532525952 -69 35 13.106643360     14.868   14.151 ~ 13 0
52 OGLE LMC-T2CEP-162 RV* 05 37 44.9503437530 -69 54 16.469856483     16.200 15.279 15.112 ~ 13 0
53 SV* HV 12631 RV* 05 39 32.8272810866 -71 21 54.287474034 16.371 15.532 15.155 14.443 14.449 C 18 0
54 SV* HV 2764 RV* 05 40 00.4969222728 -69 42 14.653446912 14.745 14.781 14.457 13.380 13.693 F0Ia 17 0
55 OGLE LMC-T2CEP-180 RV* 05 43 12.8773185120 -68 33 57.126683664 16.995 16.146 15.785 14.87 14.552 F7Ibp 14 0
56 SV* HV 6070 RV* 05 50 20.4830535768 -69 30 54.542222532     15.147   14.307 ~ 9 0
57 SV* HV 2862 RV* 05 51 22.5467140704 -69 53 51.318788784 15.870 15.589 15.160 14.460 14.009 F6-8Ibpe 16 0
58 OGLE LMC-T2CEP-192 RV* 05 53 55.7023452312 -70 17 11.282356248     16.148 15.22 15.233 ~ 9 0
59 V* DY Ori pA* 06 06 14.9085939696 +13 54 19.118975940   12.956 11.503 11.030   ~ 50 1
60 V* SS Gem RV* 06 08 35.1092051400 +22 37 01.988942124 10.42 9.71 8.67     G2/5I 68 0
61 V* U Mon RV* 07 30 47.4711645432 -09 46 36.757477488 8.22 7.00 5.82     G8/K0Ib/II 206 0
62 IRAS 09144-4933 pA* 09 16 09.6356114088 -49 46 12.098975844   16.016   12.865   M4/S? 21 0
63 V* IW Car pA* 09 26 53.3035361952 -63 37 48.931552488   9.07 7.90     F7/8 94 0
64 HD 89353 pA* 10 18 07.5899342712 -28 59 31.195183524   5.76 5.53     B9.5Ib/II 307 0
65 V* RU Cen pA* 12 09 23.8148403768 -45 25 34.801333356   9.81 8.70     G1Ie 96 1
66 V* SX Cen RV* 12 21 12.5736554208 -49 12 41.058679536   10.11 9.60     B5III 68 0
67 V* EN TrA pA* 14 57 00.6850828200 -68 50 22.897081716   9.42 8.70     F2Ib 73 0
68 CD-48 11445 pA* 17 07 36.6587101920 -48 19 08.477155920   12.33 10.55     G2p(R) 31 0
69 V* UZ Oph RV* 17 21 59.2604312616 +06 54 42.224407308 11.60 10.88 9.93     F8Iae 33 0
70 V* V340 Ser RV* 17 30 46.9248358536 -11 22 08.313569004   10.51 9.68     F2/3II 36 0
71 V* AC Her RV* 18 30 16.2373118976 +21 52 00.599340000 8.00 7.79 7.01     F4Ibp 340 0
72 V* EP Lyr RV* 19 18 19.5570243336 +27 51 03.082292928   11.22 9.96 10.14   G2II 87 1
73 V* HP Lyr pA* 19 21 39.0673459320 +39 56 08.202817716   11.12 10.38 10.15 9.615 A3Ia/Iab 59 1
74 BD+39 4926 pA* 22 46 11.2272974832 +40 06 26.309865960   9.621 9.357 9.374   A0IIp 126 0

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