2014A&A...561A...7R


Query : 2014A&A...561A...7R

2014A&A...561A...7R - Astronomy and Astrophysics, volume 561A, 7-7 (2014/1-1)

Chemical signatures of planets: beyond solar-twins.

RAMIREZ I., MELENDEZ J. and ASPLUND M.

Abstract (from CDS):

Elemental abundance studies of solar twin stars suggest that the solar chemical composition contains signatures of the formation of terrestrial planets in the solar system, namely small but significant depletions of the refractory elements. To test whether these chemical signatures of planets are real, we study stars which, compared to solar twins, have less massive convective envelopes (therefore increasing the amplitude of the predicted effect) or are, arguably, more likely to host planets (thus increasing the frequency of signature detections). We measure relative atmospheric parameters and elemental abundances of two groups of stars: a ``warm'' late-F type dwarf sample (52 stars), and a sample of ``metal-rich'' solar analogs (59 stars). The strict differential approach that we adopt allows us to determine with high precision (errors ∼0.01dex) the degree of refractory element depletion in our stars independently of Galactic chemical evolution. By examining relative abundance ratio versus condensation temperature plots we are able to identify stars with ``pristine'' composition in each sample and to determine the degree of refractory-element depletion for the rest of our stars. We calculate what mixture of Earth-like and meteorite-like material corresponds to these depletions. We detect refractory-element depletions with amplitudes up to about 0.15dex. The distribution of depletion amplitudes for stars known to host gas giant planets is not different from that of the rest of stars. The maximum amplitude of depletion increases with effective temperature from 5650K to 5950K, while it appears to be constant for warmer stars (up to 6300K). The depletions observed in solar twin stars have a maximum amplitude that is very similar to that seen here for both of our samples. Gas giant planet formation alone cannot explain the observed distributions of refractory-element depletions, leaving the formation of rocky material as a more likely explanation of our observations. More rocky material is necessary to explain the data of solar twins than metal-rich stars, and less for warm stars. However, the sizes of the stars' convective envelopes at the time of planet formation could be regulating these amplitudes. Our results could be explained if disk lifetimes were shorter in more massive stars, as independent observations indeed seem to suggest. Nevertheless, to reach stronger conclusions we will need a detailed knowledge of extrasolar planetary systems down to at least one Earth mass around a significant number of stars.

Abstract Copyright:

Journal keyword(s): stars: abundances - stars: fundamental parameters - planetary systems

VizieR on-line data: <Available at CDS (J/A+A/561/A7): sample.dat param.dat linelist.dat abund.dat mass_age.dat>

Simbad objects: 126

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Number of rows : 126
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 142 PM* 00 06 19.1753245111 -49 04 30.671249608   6.30 5.76     F7V 250 1
2 HD 1461 PM* 00 18 41.8676757921 -08 03 10.803829898   7.14 6.46     G3VFe0.5 373 1
3 * 9 Cet BY* 00 22 51.7884553555 -12 12 33.969921319 7.29 7.05 6.39     G2.5V 487 0
4 HD 3674 PM* 00 39 40.7048518056 +11 31 56.210157372       7.1   F8 46 0
5 HD 3861 PM* 00 41 11.8740924504 +09 21 18.207286416       6.2   F8V 63 0
6 HD 4271 SB* 00 45 10.9612853064 +00 15 11.830254984   7.54   6.7   F7/8V 55 0
7 HD 6512 PM* 01 06 12.6311233224 +13 15 09.878614524       7.7   G0 62 0
8 * nu. Phe PM* 01 15 11.1214282378 -45 31 53.992580679 5.65 5.54 4.96 4.47 4.11 F9VFe+0.4 256 0
9 * 40 Cet PM* 01 16 59.0060002896 -02 16 44.971191480   7.08 6.52     G2V 75 0
10 * q01 Eri PM* 01 42 29.3145176952 -53 44 26.991453264   6.05 5.52     F9V 323 1
11 HD 11226 PM* 01 50 15.4484978880 -06 42 14.722037100   7.64 7.06     K4III 76 0
12 * 79 Cet PM* 02 35 19.9291748518 -03 33 38.172943076   7.49 6.78     G2V 295 1
13 * lam02 For PM* 02 36 58.6077493776 -34 34 40.711246464 6.67 6.45 5.79     G1V 213 1
14 * iot Hor PM* 02 42 33.4666679022 -50 48 01.055138166   5.97 5.40     F8V 393 1
15 HD 17037 ** 02 44 00.94729 -06 00 33.6358           F7V 44 0
16 HD 18975A PM* 03 03 01.7881972080 -02 05 11.324895432   8.02 7.51 8.49   F8V 48 0
17 HD 20029 PM* 03 11 52.5782796648 -39 01 23.576014776   7.60 7.05     F7V 49 0
18 * 94 Cet PM* 03 12 46.4365677072 -01 11 45.955808988   5.631 5.070     F8.5V 450 1
19 HD 23127 PM* 03 39 23.6377114944 -60 04 40.237770720   9.26 8.55     G2V 73 1
20 HD 24112 PM* 03 48 46.8344115072 -40 23 57.215076072   7.81 7.24     F8V 59 0
21 HD 24040 PM* 03 50 22.9675921536 +17 28 34.926384648   8.18   7.1   G1 126 1
22 HD 28185 PM* 04 26 26.3227063776 -10 33 02.947149108   8.52 7.81     G6.5IV-V 187 1
23 HD 28099 BY* 04 26 40.1217122952 +16 44 48.885808416 8.98 8.78 8.12 7.56 7.23 G2+V 419 0
24 HD 29836 PM* 04 42 51.7064810640 +18 43 13.567108476 8.060 7.790 7.120     G5 53 0
25 HD 30562 PM* 04 48 36.3850851388 -05 40 26.557737782   6.40 5.77     G2IV 259 1
26 HD 31412 ** 04 55 55.8900936864 +04 40 13.551958056   7.57   6.7   F9.5V 75 2
27 HD 34445 PM* 05 17 40.9803494808 +07 21 12.053055060   7.97 7.33     G0 98 1
28 HD 35627 PM* 05 25 53.2108540344 -06 21 45.657701676   8.06 7.50     F8/G0V 46 0
29 HD 38110 PM* 05 42 58.8315512520 -07 28 52.179988764   8.84 8.18     G3/5V 30 0
30 HD 38382 * 05 44 28.3954021848 -20 07 35.661845280   6.898 6.341     F8.5V 96 0
31 HD 42024 SB* 06 06 11.5826776272 -45 48 57.509792136   7.79 7.24     F7V 39 0
32 HD 42902 PM* 06 11 14.0051975616 -44 13 28.325668332   9.52 8.89     G2/3V 35 0
33 HD 44420 PM* 06 21 43.5361914168 -00 32 20.856984720   8.27 7.63     G6V 101 0
34 HD 45701 PM* 06 24 26.6002796856 -63 25 44.439432744   7.12 6.46     G1V 110 0
35 HD 45346 PM* 06 24 43.7598139752 -43 24 20.427159816   9.32 8.63     G5V 59 0
36 HD 45588 PM* 06 27 11.3646632904 -25 51 23.392496052   6.61 6.07     F8IV 74 0
37 HD 47186 PM* 06 36 08.7879310512 -27 37 20.268367464   8.36 7.63     G6V 144 1
38 HD 55693 PM* 07 13 02.6731051176 -24 13 32.068394832   7.83 7.16     G1.5V 93 0
39 HD 59711 PM* 07 30 40.0131351696 -15 59 40.506885096   8.35 7.71     G2V 94 0
40 HD 61686 * 07 39 35.3036285352 -26 28 27.469894548   9.21 8.52     G3V 36 0
41 HD 62323 ** 07 43 31.1100475080 +03 29 08.984802516   7.534 7.021     F8V 44 0
42 HD 66428 PM* 08 03 28.6676662536 -01 09 45.758091420   8.97 8.26     G8IV(+G) 138 1
43 HD 69809 * 08 19 13.3890140376 +14 12 02.446812108   8.53 7.86     G0 53 0
44 HD 70642 PM* 08 21 28.1368486179 -39 42 19.484303527   7.89 7.18     G6VCN+0.5 170 1
45 HD 70889 PM* 08 23 31.8107584200 -27 49 20.477073612   7.68 7.09     F9.5V 72 0
46 HD 70843 PM* 08 24 45.4011062832 +17 10 54.310024056 7.650 7.590 7.090     F5 53 0
47 HD 71334 PM* 08 25 49.5155726353 -29 55 50.133816869   8.49 7.82     G2.5V 134 0
48 HD 72528 PM* 08 33 17.5982493432 -05 19 40.520007444   7.85 7.33     F8/G0V 44 0
49 HD 73121 PM* 08 35 12.5372164248 -39 58 13.621922472   7.007 6.431     F9.5V 87 0
50 HD 74156 PM* 08 42 25.1219511432 +04 34 41.145751740       7.2   G1V 227 2
51 HD 78534 PM* 09 09 10.3672044600 +10 49 18.109008696       8.3   G5 47 0
52 HD 78660 PM* 09 09 53.8594444200 +14 27 24.344945532       7.9   G5 73 0
53 HD 85380 PM* 09 51 21.6159623616 -06 10 54.932497248   7.00 6.42     G1V 83 0
54 HD 85683 PM* 09 51 41.3266882224 -54 39 34.664000040   7.87 7.34     F8V 36 0
55 HD 91204 * 10 32 05.5005044280 +17 59 23.044554276   8.44 7.82     G0 62 0
56 HD 92788 PM* 10 42 48.5278074048 -02 11 01.525313004   8.01 7.30     G6V 237 1
57 HD 94280 PM* 10 52 48.9438153336 -06 49 19.173865764   7.73 7.17     G0/1V 60 0
58 HD 96574 PM* 11 07 36.1996720492 +13 51 31.751282766   7.87   7.0   F9V 69 0
59 HD 98649 PM* 11 20 51.7685457816 -23 13 02.429523660   8.646 7.99 7.75 8.26 G3/5V 71 1
60 HD 102117 PM* 11 44 50.4608641248 -58 42 13.357947852   8.20 7.45     G6V 122 1
61 HD 107148 PM* 12 19 13.4910214488 -03 19 11.239255452   8.72 8.02 8.888   G5V 129 1
62 * 17 Vir PM* 12 22 32.0379656376 +05 18 19.607871132   7.01 6.47 6.1   F8V 123 0
63 HD 107692 PM* 12 22 44.8074770121 -39 10 39.654601232   7.35 6.71 7.635   G1.5V 60 0
64 HD 109409 PM* 12 34 42.3935608056 -44 40 22.867472928   6.44 5.76     G3IV 75 0
65 HD 109749 PM* 12 37 16.3785050928 -40 48 43.626163320   8.864 8.208 8.96   G3V 96 1
66 HD 111031 PM* 12 46 30.8420623488 -11 48 44.790190956   7.57 6.87     G5V 107 1
67 HD 115169 PM* 13 15 47.3883123984 -29 30 21.187221660   9.89 9.20     G3V 47 0
68 HD 117207 PM* 13 29 21.1129060560 -35 34 15.587968296   7.98 7.25     G7IV-V 141 1
69 HD 120237A PM* 13 48 55.0652037503 -35 42 15.049233110   7.11 6.56 6.44   F9V 93 0
70 HD 125612 PM* 14 20 53.5176649416 -17 28 53.489705520   8.93 8.32     G3V 122 1
71 HD 126961 PM* 14 28 31.1374541496 +02 47 19.790240640       6.7   G0V 54 0
72 HD 129191 PM* 14 41 16.1813390376 -04 56 41.533349856   8.87 8.21     G6V 65 0
73 HD 131664 * 15 00 06.0800617968 -73 32 07.189532412   8.82 8.13     G3V 78 1
74 HD 133295 PM* 15 04 33.0801489504 -28 18 00.626564304   7.74 7.17     F9VCH-0.4 57 0
75 * 23 Lib PM* 15 13 28.6669233518 -25 18 33.653388418   7.168 6.46 6.43   G6IV-V 302 1
76 HD 138159 PM* 15 30 25.1789373120 -01 19 07.712093316   9.83 9.22     G3V 21 0
77 HD 141937 PM* 15 52 17.5473965880 -18 26 09.843199116   7.87 7.25     G1V 179 1
78 HD 142331 PM* 15 54 19.7884766136 -08 34 49.370849400   9.39 8.75     G5V 46 0
79 HD 144585 PM* 16 07 03.3696573456 -14 04 16.671141984 7.22 6.98 6.32     G2V 191 0
80 HD 145377 * 16 11 36.4464979608 -27 04 41.434095684   8.73 8.10     G3V 76 1
81 * 18 Sco PM* 16 15 37.2702755653 -08 22 09.982125430   6.15 5.50     G2Va 604 0
82 HD 149143 PM* 16 32 51.0507175368 +02 05 05.380313604   8.56 7.89     G3V 101 1
83 HD 149200 PM* 16 33 23.3800486656 -04 15 43.128382032   7.75 7.24     F6V 65 0
84 HD 150437 PM* 16 42 07.3089932568 -29 07 29.972477100   8.52 7.85     G5V 72 0
85 HD 153950 PM* 17 04 30.8706752112 -43 18 35.166055248   7.90 7.38     F8V 84 1
86 HD 154962 PM* 17 08 54.5197946472 -03 52 58.785698676   7.053 6.356     G8IV(+A) 78 0
87 HD 155875 SB* 17 20 12.6785993174 -70 02 43.319162291   7.13 6.52     G0IV 63 0
88 HD 156846 PM* 17 20 34.3108875144 -19 20 01.491746388 7.20 7.10 6.52     G1V 113 1
89 * mu. Ara PM* 17 44 08.7031414872 -51 50 02.591603160   5.85 5.15     G3IV-V 530 2
90 HD 167060 PM* 18 17 44.1430022568 -61 42 31.620102804   9.56 8.92     G3V 52 0
91 HD 169830 * 18 27 49.4849984976 -29 49 00.700831380   6.406 5.902 7.01   F7V 279 1
92 HD 170469 PM* 18 29 10.9810932744 +11 41 43.803283884   8.86 8.18     G5 88 1
93 HD 171918 PM* 18 37 42.6268113792 -07 20 12.132569760   8.66 7.96     G5V 51 0
94 HD 171990 PM* 18 47 49.1318977536 -77 52 05.703216132   6.974 6.392     F8V 82 0
95 NGC 6752 GlC 19 10 52.11 -59 59 04.4           ~ 2000 0
96 HD 179079 PM* 19 11 09.8285843016 -02 38 18.188074644   8.66 7.96     G5IV 74 1
97 HD 179949 BY* 19 15 33.2300695008 -24 10 45.671448072   6.772 6.237     F8V 405 1
98 HD 181428 PM* 19 21 39.3681343752 -29 36 19.678829364   7.65 7.12     G1V 71 0
99 HD 183263 * 19 28 24.5713671072 +08 21 29.004515424   8.51 7.86     G6IV 129 1
100 HD 231701 PM* 19 32 04.1609196504 +16 28 27.443142588   9.486 8.97     F8V 60 1
101 * 16 Cyg A ** 19 41 48.9534996168 +50 31 30.219536784 6.79 6.59 5.95 5.50 5.17 G1.5Vb 761 0
102 * 16 Cyg ** 19 41 49.09 +50 31 31.6           ~ 152 0
103 * 16 Cyg B PM* 19 41 51.9726777456 +50 31 03.089030916 7.07 6.86 6.20 5.76 5.42 G3V 888 1
104 HD 187085 PM* 19 49 33.9666332064 -37 46 49.973441628   7.78 7.21     G0V 97 1
105 * omi Aql PM* 19 51 01.6436960928 +10 24 56.592457524   5.66   4.8   F8V 454 0
106 HD 189625 PM* 20 01 32.8001816928 -16 52 08.392879272   7.99 7.33     G5V 88 0
107 HD 190647 PM* 20 07 19.6699756416 -35 32 19.077690912   8.54 7.78     G5V 94 1
108 HD 192343 PM* 20 14 09.1788534888 +06 34 37.972050888   8.66 8.02     G4V 54 0
109 HD 192344 PM* 20 14 09.7715874504 +06 35 20.319826704   8.37 7.70     G4IV 61 0
110 HD 193017 * 20 18 10.0057427520 -04 43 43.193452944   7.82 7.26     F6V 67 0
111 HD 192865 PM* 20 21 35.6656237584 -67 18 46.237204044   7.45 6.91     F8V 61 0
112 HD 194035 PM* 20 22 45.0154589832 +19 50 59.992181664   7.86 7.13     G5 46 0
113 HD 196050 PM* 20 37 51.7098518376 -60 38 04.145969904   8.16 7.49   9.01 G3V 156 1
114 * 11 Aqr PM* 21 00 33.8408325744 -04 43 48.934668864   6.819 6.192     G1V 211 0
115 HD 200538 * 21 05 04.9138712592 -32 49 34.211618436   8.30 7.75     G0V 69 0
116 HD 204313 PM* 21 28 12.2060861256 -21 43 34.518205128   8.696 8.02 7.76   G5V 121 2
117 HD 209458 V* 22 03 10.7727465312 +18 53 03.549393384   8.21 7.63     F9V 1113 1
118 HD 210312 PM* 22 09 15.6220442640 +13 40 15.190752540   9.30 8.64     G5 40 0
119 HD 211317 PM* 22 18 49.6594670616 -68 18 47.144355984   7.90 7.25     G5III/IV 62 0
120 HD 212708 PM* 22 27 24.6881595693 -49 21 57.400566188   8.21 7.48     G6IV 102 0
121 HD 216625 PM* 22 54 07.4089018128 +19 53 31.381474488       6.7   F8 56 0
122 * rho Ind PM* 22 54 39.4819393536 -70 04 25.352060772 6.95 6.71 6.05     G1VFe+0.3 190 1
123 HD 218261 PM* 23 06 31.8853045584 +19 54 39.072222792   6.79   6.1   F6V 103 0
124 HD 219172 PM* 23 13 48.2326897632 +15 22 03.481910256 7.980 7.910 7.370     F8V 50 0
125 HD 219828 * 23 18 46.7341555224 +18 38 44.619358200   8.68 8.01     G0IV 111 1
126 HD 222480 PM* 23 41 08.3504703528 -32 04 16.524007716   7.75 7.12     G1V 56 0

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