2017MNRAS.466.1963L


Query : 2017MNRAS.466.1963L

2017MNRAS.466.1963L - Mon. Not. R. Astron. Soc., 466, 1963-1986 (2017/April-1)

On the silicate crystallinities of oxygen-rich evolved stars and their mass-loss rates.

LIU J., JIANG B.W., LI A. and GAO J.

Abstract (from CDS):

For decades ever since the early detection in the 1990s of the emission spectral features of crystalline silicates in oxygen-rich evolved stars, there is a long-standing debate on whether the crystallinity of the silicate dust correlates with the stellar mass-loss rate. To investigate the relation between the silicate crystallinities and the mass-loss rates of evolved stars, we carry out a detailed analysis of 28 nearby oxygen-rich stars. We derive the mass-loss rates of these sources by modelling their spectral energy distributions from the optical to the far-infrared. Unlike previous studies in which the silicate crystallinity was often measured in terms of the crystalline-to-amorphous silicate mass ratio, we characterize the silicate crystallinities of these sources with the flux ratios of the emission features of crystalline silicates to that of amorphous silicates. This does not require the knowledge of the silicate dust temperatures, which are the major source of uncertainties in estimating the crystalline-to-amorphous silicate mass ratio. With a Pearson correlation coefficient of ∼-0.24, we find that the silicate crystallinities and the mass-loss rates of these sources are not correlated. This supports the earlier findings that the dust shells of low mass-loss rate stars can contain a significant fraction of crystalline silicates without showing the characteristic features in their emission spectra.

Abstract Copyright: © 2016 The Authors Published by Oxford University Press on behalf of the Royal Astronomical Society

Journal keyword(s): stars: AGB and post-AGB - circumstellar matter - stars: evolution - stars: mass-loss - dust, extinction - dust, extinction

VizieR on-line data: <Available at CDS (J/MNRAS/466/1963): table1.dat table2.dat table3.dat tab5-13.dat table14.dat>

Simbad objects: 32

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Number of rows : 32
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 V* SV Psc LP* 01 46 35.3435781336 +19 05 04.537113684   10.02 8.773 8.41   M5 43 0
2 * omi Cet Mi* 02 19 20.79210 -02 58 39.4956   7.63 6.53 5.03   M5-9IIIe+DA 1528 0
3 V* SU Per s*r 02 22 06.8948309496 +56 36 14.893650072 13.86 11.57 9.40     M3-M4Iab 145 0
4 V* RS Per s*r 02 22 24.2955658080 +57 06 34.102933812 12.37 10.09 8.7680     M3.5IabFe-1 143 0
5 V* S Per s*r 02 22 51.7113133056 +58 35 11.422774248 13.22 10.55 7.90     M4.5-7Iae 376 0
6 V* YZ Per s*r 02 38 25.4198516592 +57 02 46.194337896 14.96 12.37 10.01     M1Iab 98 0
7 V* W Hor LP* 02 44 14.7619581984 -54 18 04.117568436   10.04 8.84     M5/7 37 0
8 V* W Per s*r 02 50 37.8929743824 +56 59 00.287654892 14.80 12.24 9.62 6.99 4.75 M3Iab-M5I 115 0
9 V* RV Cam LP* 04 30 41.6803544040 +57 24 42.284271780   9.65 8.20     M4II-III 62 0
10 IRAS 09425-6040 C* 09 44 01.6707336168 -60 54 25.639144812     12.6 11.81   C 60 0
11 V* W Hya Mi* 13 49 02.0018313132 -28 22 03.532006894   8.97 7.70     M7.5-9e 640 0
12 V* RX Boo AB* 14 24 11.6253191184 +25 42 13.394221596   9.23 8.60     M7.5-M8 441 0
13 V* X Her AB* 16 02 39.1730141112 +47 14 25.265335956   7.64 6.58     M6III 237 0
14 V* U Her OH* 16 25 47.4719383584 +18 53 32.863368084 8.85 8.23 6.70     M6.5-8+e 541 1
15 * g Her AB* 16 28 38.5495839988 +41 52 54.044914927 7.70 6.53 5.01 2.49 0.26 M6-III 377 0
16 PN H 1-2 PN 16 48 54.1065182208 -35 47 08.952429948   11.5 13.60     [WC11] 65 0
17 V* AH Sco s*r 17 11 17.0194487616 -32 19 30.714035556   10.03 8.10     M5Ia-Iab 137 0
18 V* TY Dra LP* 17 37 00.1116207432 +57 44 25.309145436   10.61 9.30     M8 53 0
19 WR 98a WR* 17 41 13.0411858104 -30 32 30.409373688   18.40   15.20 13.82 WC8/9 106 1
20 V* VX Sgr s*r 18 08 04.0442790744 -22 13 26.600899044 11.72 9.41 6.52 3.90 2.11 M8.5Ia 596 0
21 V* X Oph Mi* 18 38 21.1323356928 +08 50 02.806199880 8.61 7.72 6.40     M0-8e+K2:III 277 0
22 V* FI Lyr AB* 18 42 04.8294795960 +28 57 29.807242344   10.75 9.58     M9 44 1
23 V* R Aql OH* 19 06 22.2510922392 +08 13 48.012661776 8.06 7.69 6.09     M6.5-9e 564 2
24 V* Z Cyg Mi* 20 01 27.5075704056 +50 02 32.634937212   11.12 7.10 8.79   M5.5-6.5e 162 0
25 V* BI Cyg s*r 20 21 21.8869298736 +36 55 55.728708060   11.48 8.40     M4Iab 105 0
26 V* RW Cyg s*r 20 28 50.5903286280 +39 58 54.425527932 13.00 10.60 8.00 5.32 3.25 M3-M4Ia-Iab 127 0
27 V* SV Peg AB* 22 05 42.0835861728 +35 20 54.562625016   10.06 9.20     M7 135 0
28 V* RW Cep s*r 22 23 07.0152061200 +55 57 47.624368284 11.25 8.87 6.65 4.94 3.78 K2_0-Ia 166 0
29 V* U Lac s*r 22 47 43.4268347928 +55 09 30.312281736 13.20 11.74 9.40     M3Ia 80 0
30 V* PZ Cas s*r 23 44 03.2814215136 +61 47 22.190200476 12.80 11.48 8.90 6.08 3.90 M3Ia 202 0
31 V* Z Cas Mi* 23 44 31.6014388200 +56 34 52.983926724     12.91 10.15   M7-e 78 1
32 V* R Cas Mi* 23 58 24.8682785040 +51 23 19.713029388 6.71 6.63 4.80     M6.5-9e 702 0

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