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Vertical structure of hyper-accreting disks and consequences for gamma-ray burst outflows

机译:超吸积盘的垂直结构及其对伽马射线爆发流出的影响

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We discuss the physics of the power source for gamma-ray bursts (GRBs). There is a great variety of stellar systems proposed as progenitors of long and short GRBs, but any current model for the engine ultimately involves the formation of a hyper-accreting disk around a newly-formed black hole of a few solar masses. The study of such disks can shed light onto the burst composition and energy content. We present preliminary results from disk vertical structure calculations. These include neutrino transport, a height-dependent determination of the nuclear composition, and a simplified treatment of turbulent mixing. We find that vertical mixing is rapid enough to largely erase compositional gradients, and as a consequence the upper layers of the disk reflect the neutron-rich composition of the midplane close to the black hole. We review the implications of this for the nuclear composition of outflows in GRBs. Our models suggest an increasing role for pairs in the upper regions of the disk, and we speculate that a pair-driven wind could be a significant source of cooling.
机译:我们讨论了伽马射线暴(GRB)的动力源物理。有各种各样的恒星系统被提议作为长GRB和短GRB的祖先,但是目前任何用于发动机的模型最终都涉及在几个太阳质量的新形成的黑洞周围形成超吸积盘。对此类磁盘的研究可以揭示爆炸的成分和能量含量。我们介绍了磁盘垂直结构计算的初步结果。这些包括中微子传输,核成分的高度依赖性确定以及湍流混合的简化处理。我们发现垂直混合的速度足够快,可以很大程度上消除成分梯度,结果,圆盘的上层反映了靠近黑洞的中平面的富中子成分。我们回顾了这对于GRBs流出核构成的影响。我们的模型表明,磁盘对上部区域中的线对起着越来越重要的作用,并且我们推测线对驱动的风可能是冷却的重要来源。

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