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Table 4.

Outflow properties.

Individual outflow detections

Source vout vesc rhalo log(Mhalo) log(Mout) log(out) η[CII] log(τdep, out) log(Ėout) log(out) fesc
[km s−1] [km s−1] [kpc] [M] [M] [M yr−1] [yr] [erg s−1] [g cm s−2] [%]
(1) (2) (3) (4) (5) (6) (7) (8) (9) (10) (11) (12)
Haro2 780 ± 140 174 ± 12 74 ± 3 1.14 62 ± 3
Haro3 153 ± 34 210 ± 9 87 ± 2 0.53 18 ± 4
Haro11 314 ± 32 276 ± 11 111 ± 2 1.75 23 ± 2
He2-10 290 ± 18 238 ± 10 98 ± 3 1.09 32 ± 2
HS1222 281 ± 106 288 ± 6 114 ± 1 1.95 35 ± 16
Mrk930 262 ± 108 248 ± 14 101 ± 3 0.75 24 ± 5
Mrk1089 287 ± 32 225 ± 13 92 ± 3 1.62 33 ± 3
UGC4483 439 ± 130 68 ± 2 32 ± 1 0.23 95 ± 2
UM311 274 ± 49 289 ± 20 116 ± 5 0.59 19 ± 3
UM448 453 ± 64 328 ± 11 129 ± 3 1.85 40 ± 2
UM461 724 ± 212 123 ± 12 54 ± 4 2.38 86 ± 4

Stacking
Whole 219 ± 27 0.97
Non-det. 299 ± 50 1.76

Notes. Column key: (1) source name; (2) outflow velocity; (3) escape velocity; (4) virial radius; (5) halo mass; (6) mass of the outflowing atomic gas; (7) atomic mass outflow rate; (8) mass-loading factor; (9) outflow depletion timescale; (10) outflow kinetic power; (11) outflow momentum rate; (12) outflow escape fraction. In the bottom part of the table, first column refers to the sample used for stacking. We do not report the uncertainties on the mass-loading factors as they represent lower limits (see Sect. 5.1).

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