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Table 2

continued.

λ E exc log  gf gf W λ Wt. LTE Abundances ΔNLTE 3D
(nm) (eV) ref. (pm) 3D ⟨ 3D ⟩ HM marcs miss (3D) NLTE

Si ii
637.1370 8.121 −0.044 8 3.660 1 7.539 7.577 7.555 7.473 7.597 0.00 7.539
P i
952.5741 6.985 −0.100 9 0.700 1 5.422 5.437 5.432 5.393 5.456
975.0748 6.954 −0.180 9 0.660 1 5.433 5.448 5.443 5.404 5.467
1051.1588 6.936 −0.130 9 0.810 1 5.410 5.423 5.419 5.380 5.443
1052.9524 6.954 + 0.240 9 1.570 1 5.393 5.404 5.397 5.355 5.424
1058.1577 6.985 + 0.450 9 2.400 1 5.443 5.452 5.443 5.397 5.471
1059.6903 6.936 −0.210 9 0.750 1 5.446 5.460 5.457 5.418 5.479
1068.1406 6.954 −0.190 9 0.700 1 5.400 5.414 5.410 5.371 5.434
1081.3146 6.985 −0.410 9 0.400 1 5.369 5.384 5.382 5.344 5.405
S i
469.4113 6.525 −1.673 10 1.210 1 7.177 7.211 7.221 7.170 7.236 −0.01 7.169
469.5443 6.525 −1.829 10 0.870 1 7.164 7.198 7.208 7.161 7.222 −0.01 7.156
675.7171 a 7.870 −0.353 11 2.330 1 7.205 7.243 7.234 7.177 7.262 −0.01 7.195
867.0183 7.866 −0.879 10 0.600 2 7.114 7.158 7.149 7.096 7.175 −0.01 7.101
869.4626 7.870 + 0.101 10 3.400 3 7.114 7.144 7.126 7.062 7.158 −0.02 7.095
1045.5449 6.860 + 0.250 12 13.400 2 7.223 7.210 7.185 7.105 7.201 −0.10 7.121
1045.6757 6.860 −0.447 12 6.200 1 7.157 7.158 7.134 7.080 7.172 −0.05 7.108
1045.9406 6.860 + 0.030 12 10.600 2 7.194 7.183 7.157 7.095 7.191 −0.09 7.109
K i
404.4142 0.000 −1.944 13 1.230 1 5.002 5.031 5.089 5.003 5.057 −0.04 4.962
580.1749 1.617 −1.605 14 0.175 1 5.173 5.194 5.229 5.149 5.220 −0.03 5.143
693.8763 1.617 −1.250 15 0.380 1 5.110 5.131 5.166 5.087 5.156 −0.03 5.080
1176.9639 1.617 −0.452 14 3.300 1 5.056 5.074 5.113 5.026 5.096 −0.06 4.996
1252.2134 1.617 −0.150 14 7.000 1 5.111 5.130 5.169 5.071 5.150 −0.08 5.031
Ca i
451.2268 2.526 −1.901 16 2.200 2 6.283 6.307 6.359 6.266 6.335 + 0.02 6.303
526.0387 2.521 −1.719 17 3.000 2 6.254 6.273 6.325 6.225 6.299 + 0.02 6.274
586.7562 2.933 −1.570 18 2.300 2 6.278 6.300 6.345 6.252 6.325 + 0.02 6.298
616.1297 2.523 −1.266 17 6.000 1 6.255 6.259 6.312 6.200 6.274 + 0.02 6.275
616.3755 2.521 −1.286 17 6.200 2 6.306 6.308 6.361 6.248 6.323 + 0.02 6.326
616.6439 2.521 −1.142 17 7.130 3 6.311 6.305 6.358 6.241 6.316 + 0.02 6.331
616.9042 2.523 −0.797 17 9.760 2 6.362 6.339 6.391 6.265 6.345 0.00 6.362
616.9563 2.526 −0.478 17 11.900 2 6.316 6.290 6.340 6.210 6.296 −0.01 6.306
645.5598 2.523 −1.340 18 5.650 2 6.319 6.314 6.370 6.258 6.327 + 0.02 6.339
647.1662 2.526 −0.686 17 9.300 3 6.353 6.298 6.356 6.230 6.297 −0.03 6.323
649.9650 2.523 −0.818 17 8.750 3 6.380 6.330 6.388 6.264 6.330 −0.02 6.360
Ca ii
500.1479 7.505 −0.505 19 1.350 1 6.248 6.305 6.313 6.240 6.330 −0.01 6.238
645.6875 b 8.438 + 0.044 20 1.850 1 6.332 6.383 6.375 6.297 6.402 −0.01 6.322
732.3890 c 0.000 −7.536 21 1.000 1 6.365 6.368 6.396 6.351 6.393 0.00 6.365
824.8796 7.515 + 0.556 19 6.700 2 6.404 6.409 6.377 6.313 6.418 −0.07 6.334
825.4721 7.515 −0.398 19 1.800 2 6.339 6.372 6.360 6.301 6.390 −0.03 6.309

Notes.

(a)

Triplet computed as a single line; also contains components at 675.6851 nm (log gf = −1.784) and 675.7007 nm (log gf = −0.934).

(b)

Triplet computed as a single line; also contains two other components (log gf = + 0.157 and −1.387).

(c)

Forbidden line.

Reference. 8) Mean of Schulz-Gulde (1969), Blanco et al. (1995) and Matheron et al. (2001). 9) Berzinsh et al. (1997). 10) Mean of Froese-Fischer & Tachiev (2011), Zatsarinny & Bartschat (2006) and Deb & Hibbert (2008). 11) Mean of Froese-Fischer & Tachiev (2011) and Zatsarinny & Bartschat (2006). 12) Zerne et al. (1997; values given in the body text, not the abstract). 13) Shabanova & Khlyustalov (1985), renormalised with the lifetimes of Volz & Schmoranzer (1996) and Wang et al. (1997). 14) Opacity Project calculations and assumption of LS coupling (Keith Butler, via Zhang et al 2006). 15) Gamalii (1997). 16) Smith & Raggett (1981), as given with an extra significant figure by Smith (1981). 17) Smith & Raggett (1981). 18) Smith (1988). 19) Opacity Project calculations and assumption of LS coupling, sourced from TOPbase by Mashonkina et al (2007). 20) As per 19, but with LS-coupling fine structure splittings calculated in this paper. 21) Meléndez et al. (IRON Project Paper 64, 2007).

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