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Table 1

Initial parameters and results for our ideal MHD simulations.

Run Restart Σ0 T c0 H / R 0 [Tmid] ± σTmid T midmax T midmin [Teff] ± σ T eff α ± σ α [τtot] n t avg

Hot branch

432P 4000 23 1194 5.62E-02 21 6384 ± 7862 23 8779 20 5844 27 729 ± 3249 0.066 ± 0.014 39 294 21 1.5 6 12 16
430P 2900 18 4762 5.03E-02 16 8546 ± 9001 18 8999 15 1736 22 584 ± 2218 0.047 ± 0.014 34 026 21 1.5 6 12 95
429P 1030 10 4765 3.78E-02 98 395 ± 4544 11 0410 91 551 14 793 ± 1617 0.042 ± 0.015 20 450 20 1.5 6 12 95
431P 750 91 431 3.54E-02 86 437 ± 3314 95 825 79 883 13 268 ± 1070 0.041 ± 0.010 18 443 21 1.5 6 12 80
431O 750 91 431 3.54E-02 87 500 ± 3097 96 656 83 558 13 128 ± 899 0.042 ± 0.008 17 520 21 1.5 6 12 95
439P 540 79 831 3.30E-02 72 093 ± 3953 83 749 67 827 10 718 ± 1296 0.031 ± 0.014 22 519 20 1.5 6 12 95
439O 540 79 831 3.30E-02 74 220 ± 3082 81 313 68 523 10 920 ± 969 0.033 ± 0.010 19 578 21 1.5 6 12 95
468P 386 70 561 3.11E-02 66 985 ± 1882 72 396 62 772 10 493 ± 791 0.042 ± 0.009 16 169 22 1.5 6 12 95
468O 386 70 561 3.11E-02 66 784 ± 3186 76 966 62 428 10 281 ± 1046 0.042 ± 0.014 16 755 21 1.5 6 12 95
470P 275 63 720 2.95E-02 56 203 ± 2773 62 911 52 180 8842 ± 1003 0.036 ± 0.013 18 288 20 1.5 6 12 48
437P 174 54 545 2.73E-02 44 630 ± 4281 52 848 36 837 8117 ± 633 0.046 ± 0.017 15 323 19 1.5 6 12 60
437O 174 54 545 2.73E-02 47 414 ± 2788 52 911 40 886 8245 ± 499 0.052 ± 0.011 12 375 20 1.5 6 12 95
441P 437P 134 2.73E-02 42 882 ± 3757 51 820 34 140 8161 ± 633 0.070 ± 0.021 10 344 19 1.5 6 12 95
441O 437O 134 2.73E-02 35 605 ± 7841 51 140 18 170 7795 ± 511 0.061 ± 0.022 19 797 17 1.5 6 12 95
446P 437P 127 2.73E-02 30 515 ± 9137 46 504 15 721 7563 ± 421 0.066 ± 0.027 25 335 16 1.5 6 12 92
446O 437O 127 2.73E-02 34 881 ± 5947 42 975 17 104 7567 ± 330 0.061 ± 0.021 16 285 17 1.5 6 12 95
442P 437P 113 2.73E-02 35 004 ± 6857 45 903 17 805 7745 ± 419 0.079 ± 0.031 12 796 17 1.5 6 12 83
442O 113 34 500 2.17E-02 32 724 ± 4878 43 105 20 887 7292 ± 323 0.075 ± 0.022 15 318 21 1.5 6 12 95
452P 437P 100 2.73E-02 28 719 ± 9205 41 063 14 888 7302 ± 435 0.092 ± 0.024 18 108 15 1.5 6 12 95
452O 442O 102 2.17E-02 33 245 ± 5735 44 029 19 624 7390 ± 348 0.087 ± 0.031 11 514 21 1.5 6 12 95
453P 437P 90 2.73E-02 35 292 ± 3918 42 119 23 611 7332 ± 627 0.098 ± 0.039 7357 17 1.5 6 12 84
453O 442O 90 2.17E-02 R R R R R R R 1.5 6 12 95

Middle branch

438P 275 14 000 1.38E-02 R R R R R R R 1.5 6 12 48
428O 229 13 000 1.33E-02 R R R R R R R 1.5 6 12 95
403O 220 13 000 1.33E-02 7893 ± 1261 9956 5362 4369 ± 162 0.027 ± 0.010 2050 33 0.75 3 6 191
402O 210 13 000 1.33E-02 8085 ± 1370 10 515 5016 4423 ± 141 0.029 ± 0.011 2560 35 0.75 3 6 318
401O 200 12 000 1.28E-02 9431 ± 1224 11 964 6348 4514 ± 187 0.036 ± 0.012 8458 38 0.75 3 6 350
404O 150 9000 1.11E-02 R R R R R R R 0.75 3 6 95

Cold branch

435P 191 2645 6.01E-03 3783 ± 103 3983 3559 3206 ± 153 0.036 ± 0.009 16 15 0.75 3 6 95
435O 191 4000 7.39E-03 3785 ± 127 4055 3593 3334 ± 213 0.036 ± 0.011 15 42 0.75 3 6 95
462P 174 2785 6.17E-03 3102 ± 262 3471 2643 2855 ± 179 0.042 ± 0.014 8 45 0.75 3 6 95
465P 462P 116 6.17E-03 2095 ± 115 2346 1922 2332± 115 0.035 ± 0.008 2 39 0.75 3 6 95
434P 93 1976 5.20E-03 1897 ± 49 2028 1814 2115 ± 109 0.037 ± 0.010 1 42 0.75 3 6 95
434O 93 1976 5.20E-03 1861 ± 33 1966 1814 2022 ± 108 0.034 ± 0.010 1 42 0.75 3 6 95
476P 45 1828 4.99E-03 1715 ± 47 1840 1604 1733 ± 116 0.037 ± 0.011 4 41 0.75 3 6 56

Notes. Σ0 is the initial surface density in g cm-2, Tc0 the initial midplane temperature in K, and H/R0 where H is the corresponding scale height. Brackets [] are for quantities averaged over tavg (given in local orbits) with σ the associated standard deviation. Lx/H, Ly/H and Lz/H are the number of initial scale heights in the box in the x, y, z directions. n is the number of points per time-averaged scale height. The second column indicates the simulation from which the run was initialized, otherwise we started from an isothermal layer at Tc0. P denotes a run with periodic vertical boundary condition; O denotes outflow conditions. R signals simulations with runaway heating or cooling.

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