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Table A.1

Some properties of the single and binary models for initial masses equal to 30 M and 40 M.

Model υ ini,eq t sync t N/C t hom t WR t(end) Xc(end) υeq(end) N/C(end)
km s-1 Myr Myr Myr Myr Myr km s-1

30( + 20) M
Z = 0.002
S 0.66 391 0.81 1.76 7.12 8.24 0.035 79 307
B1.4 0.66 1.772 394 0.34 0.45 1.35 6.17 0.24 292 272
B1.6 0.54 2.025 311 0.54 0.40 1.25 5.75 0.25 267 131
B1.8 0.66 2.279 394 0.81 0.38 1.21 5.64 0.22 242 90
S 0.30 163 2.54 1.08 6.38 0.041 142 17
B1.4 0.30 0.769 167 0.17 0.93 1.23 6.02 0.26 292 186
B1.6 0.30 0.879 164 0.17 1.22 1.12 5.54 0.26 267 69
B1.8 0.30 0.989 164 0.00 1.41 1.09 5.45 0.24 242 41
Z = 0.007
S 0.66 374 0.83 1.75 8.02 0.035 58 369
B1.4 0.66 1.551 377 0.23 0.59 1.48 6.15 6.96 0.19 285 345
B1.6 0.66 1.773 377 0.36 0.60 1.32 5.59 0.30 270 131
B1.8 0.66 1.995 377 0.54 0.58 1.25 5.37 0.29 248 76
S 0.30 163 2.54 1.08 6.38 0.040 58 10
B1.4 0.30 0.769 167 0.17 0.93 1.23 6.88 0.20 286 341
B1.6 0.30 0.879 164 0.17 1.22 1.12 5.47 0.31 270 86
B1.8 0.30 0.989 164 0.00 1.41 1.09 5.18 0.30 249 41
Z = 0.014
S 0.66 362 0.92 1.55 7.62 0.041 23 369
B1.4 0.66 1.411 365 0.18 0.64 1.53 6.20 6.73 0.24 281 345
B1.6 0.66 1.613 365 0.29 0.69 1.33 5.12 0.36 270 131
B1.8 0.66 1.815 365 0.43 0.71 1.25 4.86 0.35 250 76
S 0.30 151 3.44 1.01 6.24 0.056 31 9
B1.4 0.30 0.622 151 0.11 0.61 1.48 6.72 0.24 281 379
B1.6 0.30 0.711 151 0.38 0.97 1.22 5.03 0.37 270 93
B1.8 0.30 0.800 151 0.45 1.31 1.10 4.71 0.36 251 38

40( + 26.7) M
Z = 0.002
S 0.66 416 0.51 1.88 5.28 6.24 0.035 57 286
B1.4 0.66 1.607 419 0.16 0.23 1.35 5.02 6.00 0.036 207 286
B1.6 0.66 1.837 419 0.24 0.20 1.12 5.37 0.15 302 362
B1.8 0.66 2.066 419 0.36 0.18 1.02 4.84 0.20 280 224
S 0.30 173 1.54 0.84 5.10 0.041 129 23
B1.4 0.30 0.704 174 0.07 0.33 1.25 5.0 5.98 0.040 205 286
B1.6 0.30 0.804 174 0.13 0.55 0.99 5.25 0.16 302 303
B1.8 0.30 0.905 174 0.00 0.70 0.90 4.70 0.22 280 114
Z = 0.007
S 0.66 397 0.51 1.57 6.09 6.09 0.035 24 344
B1.4 0.66 1.401 401 0.08 0.30 5.03 4.89 5.03 0.25 272 344
B1.6 0.66 1.601 401 0.16 0.30 1.29 5.13 5.29 0.19 245 341
B1.8 0.66 1.802 401 0.24 0.27 1.10 4.69 0.25 277 248
S 0.30 166 1.71 0.80 5.10 0.040 29 19
B1.4 0.30 0.617 166 0.06 0.24 5.28 4.89 6.14 0.041 208 314
B1.6 0.30 0.705 166 0.10 0.39 1.20 5.14 6.02 0.041 190 314
B1.8 0.30 0.793 166 0.20 0.60 0.97 4.62 0.25 277 274
Z = 0.014
S 0.69 401 0.55 1.31 5.21 0.18 33 310
B1.4 0.66 1.268 387 0.06 0.32 4.16 4.16 0.37 318 386
B1.6 0.66 1.450 387 0.13 0.34 1.40 4.92 4.92 0.26 278 369
B1.8 0.66 1.631 387 0.19 0.34 1.12 4.32 0.31 275 286
S 0.30 160 1.93 0.77 4.81 0.095 17 17
B1.4 0.30 0.540 161 0.05 0.20 4.16 4.16 0.37 318 386
B1.6 0.30 0.640 161 0.08 0.32 1.36 4.91 6.14 0.040 160 338
B1.8 0.30 0.720 161 0.24 0.50 1.03 4.29 0.31 275 248

Notes. In case the model is in a binary, the companion has an initial mass of 20 and 26.7 M, respectively. The symbol S is for single star models and the symbol BN.N is for close binaries with an orbital period equal to N.N days. For each metallicity and initial mass, eight models have been computed, four with a high initial rotation and four with a moderate initial rotation. When in binaries, the fast rotating cases correspond to tidally spin-down cases, while the moderately rotating cases correspond to spin-up cases. A small line in the column tWR indicates that the star does not become a WR star before any RLOF or during the MS phase.

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