2005A&A...442..961C


Query : 2005A&A...442..961C

2005A&A...442..961C - Astronomy and Astrophysics, volume 442, 961-992 (2005/11-2)

The lithium content of the Galactic Halo stars.

CHARBONNEL C. and PRIMAS F.

Abstract (from CDS):

Thanks to the accurate determination of the baryon density of the universe by the recent cosmic microwave background experiments, updated predictions of the standard model of Big Bang nucleosynthesis now yield the initial abundance of the primordial light elements with unprecedented precision. In the case of 7Li, the CMB+SBBN value is significantly higher than the generally reported abundances for Pop II stars along the so-called Spite plateau. In view of the crucial importance of this disagreement, which has cosmological, galactic and stellar implications, we decided to tackle the most critical issues of the problem by revisiting a large sample of literature Li data in halo stars that we assembled following some strict selection criteria on the quality of the original analyses. In the first part of the paper we focus on the systematic uncertainties affecting the determination of the Li abundances, one of our main goal being to look for the ``highest observational accuracy achievable" for one of the largest sets of Li abundances ever assembled. We explore in great detail the temperature scale issue with a special emphasis on reddening. We derive four sets of effective temperatures by applying the same colour-Teffcalibration but making four different assumptions about reddening and determine the LTE lithium values for each of them. We compute the NLTE corrections and apply them to the LTE lithium abundances. We then focus on our ``best'' (i.e. most consistent) set of temperatures in order to discuss the inferred mean Li value and dispersion in several Teffand metallicity intervals. The resulting mean Li values along the plateau for [Fe/H]≤-1.5 are A(Li)NLTE=2.214±0.093 and 2.224±0.075 when the lowest effective temperature considered is taken equal to 5700K and 6000K respectively. This is a factor of ∼2.48 to 2.81 (depending on the adopted SBBN model and on the effective temperature range chosen to delimit the plateau) lower than the CMB+SBBN determination. We find no evidence of intrinsic dispersion. Assuming the correctness of the CMB+SBBN prediction, we are then left with the conclusion that the Li abundance along the plateau is not the pristine one, but that halo stars have undergone surface depletion during their evolution. In the second part of the paper we further dissect our sample in search of new constraints on Li depletion in halo stars. By means of the Hipparcos parallaxes, we derive the evolutionary status of each of our sample stars, and re-discuss our derived Li abundances. A very surprising result emerges for the first time from this examination. Namely, the mean Li value as well as the dispersion appear to be lower (although fully compatible within the errors) for the dwarfs than for the turnoff and subgiant stars. For our most homogeneous dwarfs-only sample with [Fe/H]≤-1.5, the mean Li abundances are A(L)NLTE = 2.177±0.071 and 2.215±0.074 when the lowest effective temperature considered is taken equal to 5700 K and 6000 K respectively. This is a factor of 2.52 to 3.06 (depending on the selected range in Tefffor the plateau and on the SBBN predictions we compare to) lower than the CMB+SBBN primordial value. Instead, for the post-main sequence stars the corresponding values are 2.260±0.1 and 2.235±0.077, which correspond to a depletion factor of 2.28 to 2.52. These results, together with the finding that all the stars with Li abnormalities (strong deficiency or high content) lie on or originate from the hot side of the plateau, lead us to suggest that the most massive of the halo stars have had a slightly different Li history than their less massive contemporaries. In turn, this puts strong new constraints on the possible depletion mechanisms and reinforces Li as a stellar tomographer.

Abstract Copyright:

Journal keyword(s): stars: abundances - stars: Population II - stars: evolution - Galaxy: abundances - Galaxy: halo - cosmology: early Universe

VizieR on-line data: <Available at CDS (J/A+A/442/961): table3.dat refs.dat table6.dat>

Simbad objects: 154

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Number of rows : 154
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2023
#notes
1 HD 97 RG* 00 05 45.9906866184 -19 40 12.886721868   10.402 9.775 9.41   G5V 72 0
2 G 266-60 PM* 00 11 17.6396445432 -20 43 30.740140560   12.31 12.25 11.82   sdF4 24 0
3 HIP 911 ** 00 11 17.64178 -20 43 30.7888           ~ 26 0
4 HD 2665 PM* 00 30 45.4469338728 +57 03 53.628989292 8.66 8.51 7.72     G5IIIw 175 0
5 HD 3567 PM* 00 38 31.9473242153 -08 18 33.392826667 9.54 9.70 9.23     F7/8wF3 205 0
6 BD+71 31 PM* 00 43 44.3494728197 +72 10 43.121223712 10.41 10.60   10.0   F5 72 0
7 SB 960 Pe* 00 44 03.5698629048 -13 55 26.268999384   12.69 12.15 11.806 11.483 CEMP-s 110 0
8 HD 4306 SB* 00 45 27.1616035344 -09 32 39.785396712 9.80 9.75 9.02 8.75   G3/5w(A) 157 0
9 G 33-9 PM* 00 45 33.4386400320 +16 58 17.799241224   11.2   10.2   G0 38 0
10 HD 5426 PM* 00 55 41.0497469496 -33 45 11.452751640   10.32 9.65 9.43 8.76 G(wp) 59 0
11 HD 6755 SB* 01 09 43.0577179701 +61 32 50.264076956 8.48 8.40   7.3   G5 238 0
12 BD+72 94 PM* 01 47 12.3861117384 +73 28 27.195387600 10.10 10.33   9.8   sdF2: 106 0
13 BD-10 388 PM* 01 50 32.6462570064 -09 21 02.840259744   10.78 10.37     F3 92 0
14 BD+29 366 PM* 02 10 24.5274364299 +29 48 23.663397433 9.27 9.35 8.77 8.24 7.85 G3 134 0
15 HD 16031 PM* 02 34 11.0485653360 -12 23 03.444110700 9.99 10.21 9.77     F0V 166 1
16 BD+09 352 ** 02 41 13.6396003457 +09 46 12.100750635 10.37 10.62   10.0   kA7.5hF8 94 0
17 G 4-37 PM* 02 44 35.0876406984 +08 28 50.094009408   11.90   11.0   F7 82 0
18 CD-30 1121 Pe* 02 57 00.2888605704 -30 24 37.382171544   11.038 10.312     G0 47 0
19 HD 19445 PM* 03 08 25.5883873084 +26 19 51.400965175 8.29 8.52 8.06 7.60 7.27 G2VFe-3 764 0
20 CD-33 1173 Pe* 03 19 35.3159594880 -32 50 43.157572008   11.272 10.902 10.421 10.152 CEMP 58 0
21 Ross 374 PM* 03 26 59.7729638950 +23 46 35.925963580   11.36   10.6   F5 76 0
22 HD 21581 Pe* 03 28 54.4844652624 -00 25 03.107565696 9.75 9.54 8.71     G8w 126 0
23 BD+66 268 PM* 03 31 17.4003449284 +66 43 49.024902152 10.48 10.57 9.91 9.30 8.87 G0 167 0
24 CD-24 1782 Pe* 03 38 41.4850201416 -24 02 50.292102948   10.54 9.97 9.246 8.811 ~ 80 0
25 HD 24289 PM* 03 51 54.5431655808 -03 49 10.687742472   10.48 9.96     F0V 69 0
26 HD 25704 ** 04 01 44.6317980946 -57 12 24.598726799   8.65 8.10     F7V 150 0
27 HD 284248 PM* 04 14 35.5161858536 +22 21 04.252516252 9.49 9.68 9.23 8.77 8.43 sdG0 179 0
28 HD 29907 SB* 04 38 22.3989572020 -65 24 57.594232229   10.52 9.91     F8V 96 0
29 HD 31128 PM* 04 52 09.9097086888 -27 03 50.940147636   9.55 9.14     F3/5Vw 137 0
30 BD+03 740 HB* 05 01 16.6226363256 +04 06 37.021736844 9.97 10.17   9.6   sdF0 172 0
31 HD 34328 PM* 05 13 05.2760918664 -59 38 44.265435029   9.95 9.46     G0wA8V 128 0
32 CD-29 2277 PM* 05 28 50.9297117788 -29 53 47.778591790   12.13 11.61     F6 66 0
33 HD 251611 PM* 06 05 57.5366420520 +07 19 03.154614384   10.95   10.1   F8 60 0
34 BD+37 1458 PM* 06 16 01.5222885381 +37 43 18.754343426 9.41 9.52 8.92 8.34 7.91 G0 136 0
35 HD 44007 Pe* 06 18 48.5269024752 -14 50 43.423248948   8.85 8.06 7.69   G5(IV)wF3/5 182 0
36 BD+38 1456 PM* 06 20 03.8445695544 +38 20 44.100473100   11.4   10.2   G5 40 0
37 HD 45282 Pe* 06 26 40.7720940072 +03 25 29.792391024 8.71 8.69 8.03     Gwl 151 0
38 G 192-43 PM* 06 47 44.9352596626 +58 38 34.532968179   10.75   10.1   F2 67 0
39 G 88-10 SB* 07 10 23.7929838816 +24 20 40.198088508   12.30   11.7   ~ 54 0
40 BD+19 1730 PM* 07 27 02.3445261816 +19 05 55.443428700 10.99 11.174 10.727 10.418 10.094 sdF8 59 0
41 G 90-3 PM* 07 29 50.8459373520 +32 51 58.309757856   11.0   10.2   sd:F8 71 0
42 BD+24 1676 PM* 07 30 41.2662525096 +24 05 10.248524088   11.15   10.4   F 122 0
43 BD+00 2058A PM* 07 43 43.9667566029 -00 04 00.973799875   10.653 10.202 9.888 9.578 sdF 76 0
44 HD 64090 PM* 07 53 33.1208795337 +30 36 18.256204963 8.75 8.86 8.25 7.70 7.30 K0:V_Fe-3 355 0
45 HD 233511 PM* 08 19 22.5714563279 +54 05 09.623339988 10.02 10.24   9.4   F4 132 0
46 HD 74000 PM* 08 40 50.8036114756 -16 20 42.516208237 9.84 10.09 9.66     F2 263 0
47 BD+25 1981 Pe* 08 44 24.6895754316 +24 47 47.743332208   9.701   9.421   F0 140 0
48 G 115-49 PM* 09 05 16.6832426214 +38 47 54.594836831   12.10   11.2   F7 53 0
49 HD 78050 PM* 09 06 42.9261613392 +20 30 35.503123860   9.104   7.2   G0 71 0
50 BD+09 2190 Pe* 09 29 15.5615542183 +08 38 00.467004388   11.54   10.8   sdA5 130 0
51 Ross 889 Pe* 09 40 43.2053340378 +01 00 29.511836741       10.39   sdA4 160 0
52 HD 83769 ** 09 40 45.78636 +01 01 29.0180   10.53 10.15 10.12   sdF5 64 0
53 HD 84937 Pe* 09 48 56.0992891997 +13 44 39.326709913 8.49 8.68 8.32 7.97 7.70 F8Vm-5 776 0
54 HD 237846 Pe* 09 52 38.6827483320 +57 54 58.614479532   10.60 9.95     CEMP-no 96 0
55 HD 87140 PM* 10 04 43.1808079344 +54 20 43.425537648 9.70 9.68 8.98     K0 112 0
56 V* DR Oct RS* 10 07 29.5296132223 -85 04 32.990588292   9.42 8.685   7.709 G3V 109 0
57 G 43-43 PM* 10 22 07.5216759474 +12 04 37.994101090   14.23   12.229   ~ 19 1
58 BD+29 2091 PM* 10 47 23.1623890044 +28 23 55.925628075   10.72   10.1   F5 137 0
59 HD 94028 PM* 10 51 28.1256073369 +20 16 38.965439278 8.51 8.69 8.22 7.82 7.54 F8 354 0
60 Wolf 365 PM* 11 10 59.9989990311 +06 25 11.468260869   12.13   11.0   sd:G3 82 0
61 HD 97916 SB* 11 15 54.2294766960 +02 05 12.089062104 9.50 9.61   8.9   F0V 167 0
62 BD+04 2466 Pe* 11 26 49.1891119944 +03 51 51.641714700   11.22 10.67 10.45   KIIvw 76 0
63 SBS 9 SB* 11 44 17.5782091440 +40 32 17.973562848       11.6   sdF/G 34 0
64 BD-01 2582 Pe* 11 53 37.3231720128 -02 00 36.728298108   10.29 9.60     CEMP-s 106 0
65 HD 103912 PM* 11 58 00.0818432640 +48 12 12.437298792   9.25   7.8   G5V: 69 0
66 BD-04 3208 PM* 12 07 15.0721580835 -05 44 01.612773628   10.40 9.99     A7 144 0
67 Ross 453 PM* 12 10 55.7733238889 +00 23 54.332076195   11.53   10.9   F2 107 0
68 HD 107752 PM* 12 22 52.7183284776 +11 36 25.486007148   10.79 10.07     KIIvw 69 0
69 HD 108177 PM* 12 25 34.9568267745 +01 17 02.259553591 9.87 10.09 9.66 9.21 8.89 F0V 247 0
70 HD 108317 Pe* 12 26 36.8319587208 +05 18 09.023783400       7.7   G2IVm-5 164 0
71 Wolf 1447 PM* 12 34 25.1299405728 +15 16 48.959531004   12.385 11.976 11.676 11.378 A6 66 0
72 BD+28 2137 SB* 12 36 39.4525105848 +27 28 28.155760104   11.29   10.4   sdF2 90 0
73 BD+13 2567 ** 12 39 59.3743514632 +12 38 32.066390258   10.46   9.4   G5 59 0
74 HD 111721 RG* 12 51 25.1948519215 -13 29 28.166947989   8.78 7.97     G6V 159 0
75 BD+10 2495 SB* 12 59 19.9306410576 +09 14 35.634594444   10.44 9.73     G0 75 0
76 HD 113083 SB* 13 01 26.2705909615 -27 22 28.312946309   8.58 8.05     G1V 99 0
77 BD+51 1817 SB* 13 08 39.1030568267 +51 03 59.237732044       10.0   sdF6 28 0
78 HD 115444 Pe* 13 16 42.4590842616 +36 22 52.692135420   9.77 8.97 8.3 7.88 G9V 240 0
79 HD 116064 Pe* 13 21 43.7779908364 -39 18 40.025179966   9.26 8.81     F9IV-Vm-5 131 0
80 G 255-32 SB* 13 21 47.6238772026 +74 12 32.820477741       11.1   G0 50 0
81 BD+01 2831 SB* 13 36 01.7669864784 +01 12 07.843327452   11.56   10.4   F8 56 0
82 Wolf 1492 Pe* 13 40 02.4921849768 -00 02 18.750053436 11.601 11.832 11.451 11.184 10.892 sdF0: 277 0
83 HD 120559 PM* 13 51 40.3987847839 -57 26 08.350982731 8.679 8.647 7.982 7.605 7.217 G7VFe-1.4CH-1 153 0
84 HD 121004 PM* 13 53 58.1163626566 -46 32 19.522719077   10.112 9.522     G2V 149 0
85 BD+34 2476 PM* 13 59 09.4837849799 +33 51 39.379962282 10.25 10.44   9.7   sdF5 159 0
86 HD 122196 PM* 14 01 02.1249985961 -38 03 03.313496920   9.19 8.75     F0(V)w 117 0
87 Ross 841 Pe* 14 02 30.0900761861 -05 39 05.181979951   11.508 11.149 10.866 10.576 sdA3 149 0
88 HD 126587 Pe* 14 27 00.3636631296 -22 14 38.992940592   9.88 9.60 8.75   CEMP-no 132 0
89 BD+18 2890 HB* 14 32 13.4860470912 +17 25 24.289741704   10.49 9.73     ~ 64 0
90 HD 128279 Pe* 14 36 48.5108525999 -29 06 46.612858494 8.64 8.63 8.00     Gw 191 0
91 BD+26 2606 SB* 14 49 02.3593347728 +25 42 09.192358874 9.92 10.16 9.73 9.27 8.95 A5 367 0
92 Wolf 550 SB* 14 50 07.8032346714 +00 50 27.127840325   11.47   10.8   sd:F5 78 0
93 BD+26 2621 PM* 14 54 10.7123241110 +25 33 48.927279437   11.40   10.7   F0 43 0
94 HD 132475 PM* 14 59 49.7651173448 -22 00 45.815162806 8.98 9.11 8.55     F5/6V 237 1
95 HD 134169 SB* 15 08 18.0570477216 +03 55 50.144061360 8.14 8.22 7.70     F7V 208 0
96 HD 134440 PM* 15 10 12.9678589986 -16 27 46.522175847 10.69 10.217 9.426 8.913 8.441 K2V 277 0
97 HD 134439 PM* 15 10 13.0873110544 -16 22 45.877317625 10.03 9.837 9.066 8.604 8.160 sd:K1Fe-1 320 0
98 Ross 805 PM* 15 32 00.5175376385 -11 22 44.799120920   12.69 12.151 12.10 11.38 F8 24 0
99 HD 140283 Pe* 15 43 03.0971190219 -10 56 00.595693188 7.508 7.711 7.212 6.63 8.21 F9VkA5mA1 914 0
100 BD+42 2667 Pe* 16 03 13.2988107325 +42 14 46.651500150   10.33   9.6   F5 143 0
101 HD 145417 PM* 16 13 48.5588453721 -57 34 13.843989664 8.663 8.365 7.540 7.054 6.588 K3VFe-1.7 161 0
102 G 180-58 PM* 16 28 16.8722964664 +44 40 38.256976267   11.97   10.6   G5 77 0
103 HD 149414 SB* 16 34 42.3538551709 -04 13 44.635969732 10.48 10.37 9.63     G5Ve 194 0
104 G 202-65 SB* 16 35 58.5826442640 +45 51 59.242650552       10.7   sdF3 43 0
105 G 139-8 PM* 17 01 43.9814900086 +16 09 03.342064636   11.918 11.470 11.128 10.779 sd:F 49 0
106 M 92 GlC 17 17 07.39 +43 08 09.4     6.52     ~ 2049 0
107 BD+23 3130 Pe* 17 32 41.6247211304 +23 44 11.625460773       8.6   G0III 132 0
108 BD+02 3375 PM* 17 39 45.5948675731 +02 24 59.606824535 10.18 10.40 9.92 9.47 9.12 A5 196 0
109 NGC 6397 GlC 17 40 42.09 -53 40 27.6     5.17     ~ 1923 0
110 HD 160617 PM* 17 42 49.3234249010 -40 19 15.503834657   9.18 8.73 8.394 8.065 G0 201 0
111 BD-08 4501 PM* 17 47 27.9712915686 -08 46 47.733112329   11.18 10.59     sdF8 124 0
112 HD 161770 PM* 17 47 46.0757369400 -09 36 18.442563336 10.38 10.39 9.71 9.04 8.55 F3V 96 0
113 BD+36 2964 PM* 17 52 18.0525471888 +36 24 06.619879188       10.2   sd:F8 35 0
114 BD+20 3603 PM* 17 54 43.2306198848 +20 16 16.444611703   10.13   9.6   F0 158 0
115 HD 163810 ** 17 58 38.4538029750 -13 05 49.654844460 10.15 10.23 9.63     G3V 144 0
116 BD+01 3597 PM* 18 07 56.5963171590 +01 52 32.701833212   11.53   10.8   sdF5 64 0
117 HD 166913 PM* 18 16 25.6832938176 -59 24 11.239435980   8.66 8.23     F5/7Vw 132 0
118 BD+13 3683 SB* 18 33 16.8450962112 +13 09 25.493753160   11.19   10.0   F5 99 0
119 Ross 711 SB* 18 35 19.1686289616 +28 41 55.415394492   11.83   11.2   A8 94 0
120 HD 175305 RG* 18 47 06.4416868934 +74 43 31.451436187 8.07 7.93 7.18 6.52 6.03 G5III 215 0
121 BD+42 3187 RG* 18 54 16.9544655840 +42 59 00.384912816       9.6   G2 83 0
122 HD 181743 PM* 19 23 42.7454702782 -45 04 56.914961207   10.13 9.71     F4 105 0
123 HD 338529 PM* 19 32 31.9104668184 +26 23 26.117367216   9.72   9.2   B5 207 0
124 HD 188510 PM* 19 55 09.6782304000 +10 44 27.398607828 9.30 9.41   8.5   G5V: 248 0
125 HD 189558 PM* 20 01 00.2452184673 -12 15 20.353638621   8.28 7.73     F8/G2V 187 0
126 HD 190287 PM* 20 05 38.2682394768 -34 55 11.942867100   9.23 8.54     G6Vw 61 0
127 G 24-3 Pe* 20 05 44.3170407024 +04 02 52.812418452   10.92   10.2   sdF8 91 0
128 BD+42 3607 PM* 20 09 01.4132638739 +42 51 54.930960323       9.9   F3 83 0
129 HD 345957 PM* 20 10 48.1625876064 +23 57 54.510596568   9.36   8.6   G0V: 142 0
130 HD 193901 PM* 20 23 35.8471605389 -21 22 14.226959304 9.08 9.22 8.67 8.17 7.87 F7V 277 0
131 HD 340279 PM* 20 24 45.4125969504 +25 03 07.109969040   11.23   10.7   A5 101 0
132 HD 194598 PM* 20 26 11.9183775668 +09 27 00.429558608 8.62 8.82 8.34 7.90 7.56 F8 300 0
133 CD-30 18140 PM* 20 44 06.2872647830 -30 00 07.597192977   10.326 9.932     F8 87 0
134 BD+04 4551 PM* 20 48 50.7247431816 +05 11 58.817679324   10.13 9.67 9.61   F7Vw 77 0
135 BD+41 3931 PM* 20 55 16.7551875178 +42 18 00.680491946       10.0   G5 93 0
136 HD 358059 Pe* 20 56 09.1348060632 -13 31 17.690158776   11.016 10.192     G0 60 0
137 HD 200654 Pe* 21 06 34.7513254468 -49 57 50.280288000   9.74 9.11     CEMP 104 0
138 HD 201781 * 21 11 58.8153841440 -05 57 49.675355784   8.41 8.29     A2/3V 18 0
139 HD 201891 Pe* 21 11 59.0321495469 +17 43 39.890919730 7.74 7.88 7.37 6.91 6.59 G5V_Fe-2.5 388 0
140 HD 201889 ** 21 11 59.52350 +24 10 05.3897 8.60 8.64 8.05 7.52 7.15 G1V 159 0
141 CD-35 14849 PM* 21 33 49.7524989129 -35 26 14.228198341   10.95 10.56 10.59   B8 72 0
142 Wolf 1143 PM* 21 55 16.1462515842 +32 38 41.150257734   11.69   10.6   G2V 74 0
143 BD+17 4708 SB* 22 11 31.3756832854 +18 05 34.177983548 9.73 9.91 9.46 9.03 8.70 sdF8 561 0
144 BD+07 4841 PM* 22 18 36.5059714907 +08 26 44.962089682   10.84   10.1   G0 111 0
145 L 1077-30 SB* 22 31 36.2183313448 +02 09 43.848163336   11.24   10.5   sd:F7 66 0
146 HD 213657 PM* 22 33 47.0565175200 -42 03 13.790346516   10.08 9.66     (G0)w(A) 93 0
147 HD 218502 PM* 23 08 39.3724933569 -15 03 11.944919751   8.65 8.25     F(3)w 98 0
148 HD 218857 PM* 23 11 24.5948299440 -16 15 04.026507912   9.60 8.95     G5/8w(a) 110 0
149 BD+38 4955 SB* 23 13 38.8205905578 +39 25 02.589638688 11.52 11.67 11.01 10.38 9.92 F6 120 0
150 HD 219617 ** 23 17 05.04375 -13 51 03.5971 8.41 8.60 8.14 7.70 7.37 F8 309 0
151 BD+02 4651 PM* 23 19 40.4500387773 +03 22 16.694733495   10.67   9.9   sdF6 109 0
152 BD+59 2723 SB* 23 26 32.8574602006 +60 37 42.846968726 10.74 10.92   10.1   sdF8 101 0
153 Wolf 1043 SB* 23 50 01.3657537782 +08 43 23.371709641   11.88   11.1   sd:F8 52 0
154 CD-31 19466 PM* 23 50 12.5188240206 -30 34 21.205950891   11.824 11.393 11.18 10.96 ~ 21 0

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2023.05.30-06:19:35

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