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首页> 外文期刊>PASJ: Publications of the Astronomical Society of Japan >Radiation drag effects in black hole outflows from super-critical accretion disks via special relativistic radiation magnetohydrodynamics simulations
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Radiation drag effects in black hole outflows from super-critical accretion disks via special relativistic radiation magnetohydrodynamics simulations

机译:通过特殊的相对论辐射磁流体动力学模拟,超临界吸积盘黑洞流出的辐射阻力效应

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By performing 2.5-dimensional special relativistic radiation magnetohydrodynamics simulations, we study super-critical accretion disks and the outflows launched via the radiation force. We find that the outflow is accelerated by the radiation flux force, but the radiation drag force prevents the outflow velocity from increasing. The outflow velocity saturates around 30%-40% of the light speed around the rotation axis, since then the flux force balances with the drag force. Our simulations show that the outflow velocity is kept nearly constant in the region of (M) over dot(BH) similar to 10(2-3)L(Edd)/c(2), where (M) over dot(BH) is the mass accretion rate, L-Edd is the Eddington luminosity, and c is the light speed. Such a faster outflow is surrounded by a slower outflow of similar to 0.1c. This velocity is also determined by the balance between the radiation flux force and the radiation drag. The radiation drag works to collimate the slower outflow in cooperation with the Lorentz force, although the faster outflow is mainly collimated by the Lorentz force. The kinetic energy is carried by the slower outflow rather than by the faster outflow. The total kinetic luminosity of the outflow as well as the photon luminosity is similar to L-Edd, almost independent of the mass accretion rate.
机译:通过执行2.5维特殊的相对论辐射磁流体动力学模拟,我们研究了超临界吸积盘和通过辐射力发射的流出物。我们发现,辐射通量力促进了流出,但是辐射阻力阻止了流出速度的增加。流出速度围绕绕旋转轴的光速大约饱和30%-40%,因为此后磁通量与拖曳力达到平衡。我们的模拟表明,在点(BH)上的(M)区域中的流出速度几乎保持恒定,类似于10(2-3)L(Edd)/ c(2),其中点(BH)上的(M)是质量吸收率,L-Edd是爱丁顿光度,c是光速。如此快的流出量被类似0.1c的较慢的流出量所包围。该速度还由辐射通量力和辐射阻力之间的平衡确定。辐射阻力与洛伦兹力协同作用,以校正较慢的流出,尽管较快的流出主要由洛伦兹力进行了校正。动能由较慢的流出而不是较快的流出承载。流出的总动力学发光度以及光子发光度与L-Edd相似,几乎与质量积聚率无关。

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