2019A&A...629A..49O


Query : 2019A&A...629A..49O

2019A&A...629A..49O - Astronomy and Astrophysics, volume 629A, 49-49 (2019/9-1)

Modelling depletion by re-accretion of gas from a dusty disc in post-AGB stars.

OOMEN G.-M., VAN WINCKEL H., POLS O. and NELEMANS G.

Abstract (from CDS):

Many disc-type post-asymptotic giant branch (post-AGB) stars are chemically peculiar, showing underabundances of refractory elements in their photospheres that correlate with condensation temperature. The aim of this paper is to investigate how accretion from a circumbinary disc can cause this phenomenon of depletion and how this impacts the evolution of post-AGB stars. We used the MESA code to evolve stars in the post-AGB phase, while including accretion of metal-poor gas. We compared the models to a sample of 58 observed disc-type post-AGB stars with chemical abundance data. For each of these stars, we estimated the luminosity and the mass using the Gaia distance. We modelled the accretion rate onto the binary from a viscously evolving disc for a range of initial accretion rates and disc masses. We find that large initial accretion rates (≥3x10–7M/yr) and large initial disc masses (∼10–2M) are needed to reproduce the observed depleted post-AGB stars. Based on these high accretion rates, the evolution timescale of post-AGB stars can be significantly extended by a factor between two and five. We distinguish depletion patterns that are unsaturated (plateau profile) from those that are saturated, and we expect that post-red giant branch (post-RGB) stars are much more likely to show an unsaturated abundance pattern compared to post-AGB stars. Finally, because of the slower evolution of the low-mass post-RGB stars, we find that these systems can become depleted at lower effective temperatures (<5000K). We conclude that accretion from a circumbinary disc successfully accounts for the chemical peculiarity of post-AGB stars.

Abstract Copyright: © ESO 2019

Journal keyword(s): stars: AGB and post-AGB - circumstellar matter - stars: chemically peculiar - binaries: spectroscopic

Simbad objects: 59

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Number of rows : 59
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 BD+46 442 * 01 45 47.0311634664 +46 49 00.937724124   10.02 9.46     F2III 27 0
2 NAME Magellanic Clouds GrG 03 00 -71.0           ~ 7067 0
3 V* TW Cam pA* 04 20 47.6363454312 +57 26 28.522779504 12.12 11.42 10.08 9.29   G8Ib 71 0
4 V* RV Tau RV* 04 47 06.7239850584 +26 10 45.532913268   11.00 9.80     K3Ibe 279 1
5 V* DY Ori pA* 06 06 14.9085939696 +13 54 19.118975940   12.956 11.503 11.030   ~ 50 1
6 V* SS Gem RV* 06 08 35.1092051400 +22 37 01.988942124 10.42 9.71 8.67     G2/5I 68 0
7 V* CT Ori RV* 06 09 57.9915157032 +09 52 31.839108384   11.24 9.14     F9 39 0
8 V* SU Gem Mi* 06 14 00.0252211992 +27 42 12.186889416   11.70 10.19 11.92   F8/G0Ib 51 0
9 V* UY CMa RV* 06 18 16.3755429480 -17 02 34.676976156   11.55 10.80     G0V 42 0
10 IRAS 06165+3158 LP? 06 19 50.6236629912 +31 56 58.174574928           ~ 9 0
11 HD 44179 pA* 06 19 58.2185496 -10 38 14.706068 9.51 9.33 9.02     B9Ib/II 765 0
12 V* V382 Aur pA* 06 37 52.4269199856 +53 31 01.958446992   9.585 9.295 9.078   F7IV: 133 0
13 V* ST Pup pA* 06 48 56.4136156056 -37 16 33.338192304   10.47 9.28 9.89 9.29 G2I 92 0
14 V* SZ Mon pA* 06 51 27.8476503456 -01 22 15.965715072   10.996 10.259 9.910 9.109 F8(e) 69 1
15 V* PS Gem pA* 07 03 39.6305052432 +10 46 13.068774048   7.76 7.37     A0 120 0
16 V* V421 CMa pA* 07 16 08.2750036896 -23 27 01.536458868   11.16 10.73     F5 31 0
17 V* U Mon RV* 07 30 47.4711645432 -09 46 36.757477488 8.22 7.00 5.82     G8/K0Ib/II 206 0
18 V* AR Pup pA* 08 03 01.6516600440 -36 35 47.949428976   10.25 9.55     Rpec 86 0
19 CD-44 4961 pA* 08 56 14.1799968840 -44 43 10.721249580   10.55 9.176     F3e 73 1
20 V* BZ Pyx pA* 09 08 10.1394900720 -28 19 10.396543512   12.04 11.39     F6Ia 16 0
21 IRAS 09144-4933 pA* 09 16 09.6356114088 -49 46 12.098975844   16.016   12.865   M4/S? 21 0
22 V* IW Car pA* 09 26 53.3035361952 -63 37 48.931552488   9.07 7.90     F7/8 94 0
23 V* GP Cha RV* 09 53 57.6758478120 -76 36 52.265551536   12.49 11.52     G0 17 0
24 HD 89353 pA* 10 18 07.5899342712 -28 59 31.195183524   5.76 5.53     B9.5Ib/II 307 0
25 V* GK Car RV* 11 14 01.5383883480 -57 43 15.283169292   12.01 12.50     ~ 22 0
26 V* AF Crt pA* 11 49 48.0368308800 -08 17 20.452690140   11.72 11.17 11.50 10.592 ~ 33 0
27 V* RU Cen pA* 12 09 23.8148403768 -45 25 34.801333356   9.81 8.70     G1Ie 96 1
28 V* SX Cen RV* 12 21 12.5736554208 -49 12 41.058679536   10.11 9.60     B5III 68 0
29 HD 108015 pA* 12 24 53.5035641784 -47 09 07.499485656   8.379 7.96     F3/5Ib/II 61 0
30 V* EN TrA pA* 14 57 00.6850828200 -68 50 22.897081716   9.42 8.70     F2Ib 73 0
31 IRAS 15469-5311 pA* 15 50 43.8050062584 -53 20 43.252965456   11.963 10.504 10.212   F3 27 0
32 V* V1333 Sco pA* 16 26 20.3836477344 -34 17 12.911443404   12.38 11.41     F8 21 0
33 V* GZ Nor LP* 16 31 54.1446673320 -55 33 07.475158152           ~ 7 0
34 CD-48 11445 pA* 17 07 36.6587101920 -48 19 08.477155920   12.33 10.55     G2p(R) 31 0
35 IRAS 17233-4330 WV* 17 26 58.6372808208 -43 33 13.574510568   11.99 11.56   11.142 A2Iab 21 0
36 V* LR Sco RV* 17 27 53.6271514344 -43 50 46.291360596   11.45 10.37     G0I 34 0
37 V* UY Ara pA* 17 29 28.9495380096 -59 54 02.183763204   11.86 10.98 10.97   ~ 25 1
38 V* V340 Ser RV* 17 30 46.9248358536 -11 22 08.313569004   10.51 9.68     F2/3II 36 0
39 * 89 Her pA* 17 55 25.1883476136 +26 02 59.968457664 5.36 5.70 5.36 5.06 4.94 F2Ibp 411 0
40 V* AI Sco RV* 17 56 18.5781588120 -33 48 43.278508116   10.99 9.98     G5 47 0
41 V* AZ Sgr RV* 18 24 11.1427347360 -30 35 48.258522384   11.68 11.00 10.83   G0V 10 0
42 V* AC Her RV* 18 30 16.2373118976 +21 52 00.599340000 8.00 7.79 7.01     F4Ibp 340 0
43 V* CC Lyr WV* 18 33 57.4123406832 +31 38 24.187157196   12.98 12.46     hF4mA:CH+1 51 0
44 V* R Sct cC* 18 47 28.9498974024 -05 42 18.542611800 8.30 6.67 5.20 4.14 3.37 K4/5pec 319 0
45 V* BZ Sct cC* 18 57 33.4182497280 -05 47 55.707360000   13.69 12.40 12.06 11.027 ~ 13 0
46 V* AD Aql RV* 18 59 08.6994133296 -08 10 14.041081272   12.00 11.62 11.129   kF1hF5cnG5Ib 34 1
47 BD+03 3950 RV* 19 15 01.1800830552 +03 48 42.641057988   11.16 10.37     F8 39 0
48 V* V677 Lyr LP* 19 15 12.1372704744 +39 42 50.490059760   10.75 10.13   10.441 F2IIe 28 0
49 V* EP Lyr RV* 19 18 19.5570243336 +27 51 03.082292928   11.22 9.96 10.14   G2II 87 1
50 BD-02 4931 pA* 19 18 22.7165647344 -02 42 10.880466588   11.55 10.78     B1III 35 0
51 V* HP Lyr pA* 19 21 39.0673459320 +39 56 08.202817716   11.12 10.38 10.15 9.615 A3Ia/Iab 59 1
52 V* DF Cyg RV* 19 48 53.9450982768 +43 02 14.539346592   12.19 10.80 10.81 10.484 G6/7Ib/IIa 46 0
53 V* QY Sge LP* 20 07 54.6224115384 +18 42 54.538913232   12.57       G0Ie 55 0
54 V* R Sge RV* 20 14 03.7432133928 +16 43 35.030552844   10.17 9.20     G8Ib 81 0
55 V* V Vul RV* 20 36 32.0211817128 +26 36 14.499788940   9.68 8.05     K0 81 0
56 V* BT Lac RV* 22 24 13.7741799576 +56 11 33.217084968           G8 13 0
57 V* HM Aqr pA* 22 35 27.5260668720 -17 15 26.894587392 9.31 9.08 8.90     A0III 111 0
58 BD+39 4926 pA* 22 46 11.2272974832 +40 06 26.309865960   9.621 9.357 9.374   A0IIp 126 0
59 V* EQ Cas RV* 23 52 53.2688792520 +55 00 49.012743492   12.57 9.30     F8II/IIIe 29 1

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