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Super-critical Accretion Flows around Black Holes: Two-dimensional, Radiation-pressure-dominated Disks with Photon-trapping

机译:黑洞周围的超临界吸积流:具有光子俘获功能的二维辐射压强磁盘

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摘要

The quasi-steady structure of super-critical accretion flows around a black hole is studied based on the two-dimensional radiation-hydrodynamical (2D-RHD) simulations. The super-critical flow is composed of two parts: the disk region and the outflow regions above and below the disk. Within the disk region the circular motion as well as the patchy density structure are observed, which is caused by Kelvin-Helmholtz instability and probably by convection. The mass-accretion rate decreases inward, roughly in proportion to the radius, and the remaining part of the disk material leaves the disk to form outflow because of strong radiation pressure force. We confirm that photon trapping plays an important role within the disk. Thus, matter can fall onto the black hole at a rate exceeding the Eddington rate. The emission is highly anisotropic and moderately collimated so that the apparent luminosity can exceed the Eddington luminosity by a factor of a few in the face-on view. The mass-accretion rate onto the black hole increases with increase of the absorption opacity (metalicity) of the accreting matter. This implies that the black hole tends to grow up faster in the metal rich regions as in starburst galaxies or star-forming regions.
机译:基于二维辐射-流体动力学(2D-RHD)仿真,研究了黑洞周围超临界吸积流的准稳态结构。超临界流由两部分组成:磁盘区域和磁盘上方和下方的流出区域。在圆盘区域内,观察到圆周运动以及斑片状的密度结构,这是由开尔文-亥姆霍兹不稳定性以及对流引起的。质量增加率向内减小,大致与半径成比例,并且由于强大的辐射压力,磁盘材料的其余部分离开磁盘形成流出。我们确认光子捕获在磁盘内起重要作用。因此,物质可能以超过爱丁顿速率的速率掉入黑洞。发射是高度各向异性的,并且具有适度的准直度,因此从正面看,表观光度可以超过爱丁顿光度。黑洞上的吸积率随着吸积物的吸收不透明度(金属性)的增加而增加。这意味着黑洞倾向于在富金属区域如星爆星系或恒星形成区域中更快地生长。

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