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Table 7

Derived molecular outflow properties.

Object Mouta Mtotb voutc vmaxd Route Rmaxf logtdyng logouth logtdepi logoutj logLoutk
(108 M) (109 M) (km s−1) (km s−1) (pc) (kpc) (yr) (M yr−1) (yr) (g cm s−2) (erg cm−2 s)
I12112 SW 0.31 1.0 360 520 810 1.8 6.3 1.1 7.9 34.49 41.74
I12112 NE 5.7 6.1 530 910 710 3.4 6.1 2.6 7.2 36.13 43.55
I14348 SW 5.2 6.7 430 770 1000 6.0 6.4 2.4 7.5 35.79 43.13
I14348 NE 1.0 2.9 460 650 590 1.5 6.1 1.9 7.5 35.38 42.75
I22491 E 1.2 3.5 400 500 250 0.9 5.8 2.3 7.2 35.72 43.02

Notes. (a,b) Outflow and integrated molecular gas masses, respectively, assuming a ULIRG-like conversion factor αCO of 0.78 M (K km s−1 pc−2)−1 and r21 ratio of 0.91 (Bolatto et al. 2013). (c) Inclination corrected outflow velocity |vhigh |/ cosi (see Table 6). (d)Inclination corrected maximum outflow velocity |vmax |/ cosi (see Table 6). (e)Inclination corrected outflow radius range estimated from Rc / sini (see Table 6). (f)Inclination corrected outflow maximum radius derived using Rmax / sini (see Table 6). (g)Outflow dynamical time tdyn = Rout/vout (see Table 6). (h)Outflow rate out = vout × Mout/Rout. The uncertainty is ~0.4 dex (see Sect. 3.3.2). (i)Depletion time tdep = Mtot/out. (j) Outflow momentum rate out = out × vout. (k) Outflow kinetic luminosity .

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