Table 3.

Dependence of the wind properties on the gas density. The gas temperature (2 × 106 K) and CR pressure (⁠|$4\times 10^{-13} \rm\, erg\, cm^{-3}$|⁠) are fixed. |$\dot{m}$| is the mass-loss rate of the wind.

Gas densityu0zcuf|$\dot{m}$|
|$n_0^{\rm R} = 6\times 10^{-3}$|4.7 × 10−4
(cm− 3)(km s−1)(kpc)(km s−1)|$(\rm M_{{\odot }}\, kpc^{-2}\, \rm yr^{-1})$|
0.239.718.95952.5
0.510.730.94281.7
1.03.140.6403.71.0
3.00.872.22960.73
6.00.396.52690.53
Gas densityu0zcuf|$\dot{m}$|
|$n_0^{\rm R} = 6\times 10^{-3}$|4.7 × 10−4
(cm− 3)(km s−1)(kpc)(km s−1)|$(\rm M_{{\odot }}\, kpc^{-2}\, \rm yr^{-1})$|
0.239.718.95952.5
0.510.730.94281.7
1.03.140.6403.71.0
3.00.872.22960.73
6.00.396.52690.53
Table 3.

Dependence of the wind properties on the gas density. The gas temperature (2 × 106 K) and CR pressure (⁠|$4\times 10^{-13} \rm\, erg\, cm^{-3}$|⁠) are fixed. |$\dot{m}$| is the mass-loss rate of the wind.

Gas densityu0zcuf|$\dot{m}$|
|$n_0^{\rm R} = 6\times 10^{-3}$|4.7 × 10−4
(cm− 3)(km s−1)(kpc)(km s−1)|$(\rm M_{{\odot }}\, kpc^{-2}\, \rm yr^{-1})$|
0.239.718.95952.5
0.510.730.94281.7
1.03.140.6403.71.0
3.00.872.22960.73
6.00.396.52690.53
Gas densityu0zcuf|$\dot{m}$|
|$n_0^{\rm R} = 6\times 10^{-3}$|4.7 × 10−4
(cm− 3)(km s−1)(kpc)(km s−1)|$(\rm M_{{\odot }}\, kpc^{-2}\, \rm yr^{-1})$|
0.239.718.95952.5
0.510.730.94281.7
1.03.140.6403.71.0
3.00.872.22960.73
6.00.396.52690.53
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