首页> 外文期刊>The Astrophysical journal >THE EFFECT OF OBLATENESS AND GRAVITY DARKENING ON THE RADIATION DRIVING IN WINDS FROM RAPIDLY ROTATING B STARS
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THE EFFECT OF OBLATENESS AND GRAVITY DARKENING ON THE RADIATION DRIVING IN WINDS FROM RAPIDLY ROTATING B STARS

机译:扁率和重力变暗对快速旋转B恒星风辐射驱动的影响

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摘要

We calculate the radiative driving force for winds around rapidly rotating oblate B stars, and we estimate the impact these forces should have on the production of a wind compressed disk. The effects of limb darkening, gravity darkening, oblateness, and an arbitrary wind velocity field are included in the computation of vector "oblate finite disk" (OFD) factors, which depend on both radius and colatitude in the wind. The impact of limb darkening alone, with or without rotation, can increase the mass loss by as much as 10% over values computed using the standard uniformly bright spherical finite disk factor. For rapidly rotating stars, limb darkening makes "sub-stellar" gravity darkening the dominant effect in the radial and latitudinal OFD factors, and lessens the impact of gravity darkening at other visible latitudes (nearer to the oblate limb). Thus, the radial radiative driving is generally stronger over the poles and weaker over the equator, following the gravity darkening at these latitudes. The nonradial radiative driving is considerably smaller in magnitude than the radial component, but is directed both away from the equatorial plane and in a retrograde azimuthal direction, acting to decrease the effective stellar rotation velocity. These forces thus weaken the equatorward wind compression compared to wind models computed with nonrotating finite disk factors.
机译:我们计算了绕着快速旋转的扁圆B恒星的风的辐射驱动力,并估计了这些力对风压盘产生的影响。向量“扁圆有限盘”(OFD)因子的计算中包括肢体变暗,重力变暗,扁圆度和任意风速场的影响,这些因素取决于风的半径和清晰度。与使用标准均匀明亮球形有限圆盘系数计算得出的值相比,仅在旋转或不旋转的情况下,肢体变暗的影响就会使质量损失增加多达10%。对于快速旋转的恒星,肢体变暗使“亚星状”重力变暗在径向和纬度OFD因素中起主要作用,并减轻了重力变暗在其他可见纬度(扁圆肢附近)的影响。因此,在这些纬度处的重力变暗之后,径向辐射驱动通常在两极上更强,而在赤道上更弱。非径向辐射驱动的幅度比径向分量小得多,但既背离赤道平面,又背向方位角方向,从而降低了有效的恒星旋转速度。因此,与使用非旋转有限圆盘因子计算的风模型相比,这些力削弱了赤道风压缩。

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