Table 1: Model wind parameters. Listed are the electron temperature, $T_{\rm e}$, mass fluxes in polar and equatorial direction, $F_{\rm m, pol}$ and $F_{\rm m, eq}$, mass loss rate of the star, $\dot{M}$, terminal velocity in equatorial direction, $v_{\infty ,\rm eq}$, and the resulting equatorial hydrogen density on the stellar surface,  $N_{\rm H, \rm eq}(R_{*})$. The velocity in polar direction is assumed to be in all cases 2000 km s-1 which is a typical value in a CAK-type wind.
Model $T_{\rm e}$ $F_{\rm m, pol}$ $F_{\rm m, eq}$ $\dot{M}$ $v_{\infty ,\rm eq}$ b s $N_{\rm H, eq}(R_{*})$
  [K] [g s-1 cm-2] [g s-1 cm-2] [$M_{\odot}$/yr] [km s-1]     [cm-3]
A $1.0\times 10^{4}$ $1.5\times 10^{-7}$ $1.5\times 10^{-6}$ $2.4\times 10^{-6}$ 20 3.0 100 $3.3\times 10^{11}$
B $1.5\times 10^{4}$ $1.5\times 10^{-7}$ $1.5\times 10^{-6}$ $2.4\times 10^{-6}$ 20 3.0 100 $3.3\times 10^{11}$
C $1.0\times 10^{4}$ $1.5\times 10^{-6}$ $1.5\times 10^{-5}$ $2.4\times 10^{-5}$ 20 3.0 100 $3.3\times 10^{12}$
D $1.0\times 10^{4}$ $1.5\times 10^{-8}$ $1.5\times 10^{-7}$ $2.4\times 10^{-7}$ 20 3.0 100 $3.3\times 10^{10}$
E $1.0\times 10^{4}$ $1.5\times 10^{-7}$ $4.9\times 10^{-7}$ $1.8\times 10^{-6}$ 63 2.0 100 $3.3\times 10^{10}$
F $1.0\times 10^{4}$ $1.5\times 10^{-7}$ $1.5\times 10^{-6}$ $4.0\times 10^{-6}$ 20 3.0 10 $3.3\times 10^{11}$


Source LaTeX | All tables | In the text