首页> 外文期刊>The Astrophysical journal >THREE-DIMENSIONAL MAGNETOHYDRODYNAMIC SIMULATIONS OF CIRCUMBINARY ACCRETION DISKS: DISK STRUCTURES AND ANGULAR MOMENTUM TRANSPORT
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THREE-DIMENSIONAL MAGNETOHYDRODYNAMIC SIMULATIONS OF CIRCUMBINARY ACCRETION DISKS: DISK STRUCTURES AND ANGULAR MOMENTUM TRANSPORT

机译:循环吸积盘的三维磁流体动力学模拟:盘结构和角动量传输

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We present the first three-dimensional magnetohydrodynamic (MHD) simulations of a circumbinary disk surrounding an equal-mass binary. The binary maintains a fixed circular orbit of separation a. As in previous hydrodynamic simulations, strong torques by the binary can maintain a gap of radius 2a. Streams curve inward from r 2a toward the binary; some of their mass passes through the inner boundary, while the remainder swings back out to the disk. However, we also find that near its inner edge the disk develops both a strong m = 1 asymmetry and growing orbital eccentricity. Because the MHD stresses introduce more matter into the gap, the total torque per unit disk mass is 14?times larger than found previously. The inner boundary accretion rate per unit disk mass is 40?times greater than found from previous hydrodynamic calculations. The implied binary shrinkage rate is determined by a balance between the rate at which the binary gains angular momentum by accretion and loses it by gravitational torque. The large accretion rate brings these two rates nearly into balance, but in net, we find that , and its magnitude is about 2.7?times larger than predicted by the earlier hydrodynamic simulations. If the binary comprises two massive black holes, the accretion rate may be great enough for one or both to be an active galactic nucleus, with consequences for the physical state of the gas both in the disk body and in its inner gap.
机译:我们提出围绕等质量二进制数的外接圆盘的第一个三维磁流体动力学(MHD)模拟。双星保持一个固定的圆形分离轨道a。与以前的水动力模拟一样,双星产生的强大扭矩可以保持半径为2a的间隙。流从r 2a向内指向二进制。它们的一些质量通过内部边界,而其余部分又摆动回磁盘。但是,我们还发现,在其内边缘附近,圆盘既发展出强烈的m = 1不对称性,又发展出轨道偏心率。由于MHD应力会在间隙中引入更多的物质,因此每单位磁盘质量的总转矩比以前发现的大14倍。单位圆盘质量的内边界积聚速率比以前的流体力学计算结果高40倍。隐含的二进制收缩率由二进制通过吸积获得角动量和通过重力失去动量的速率之间的平衡来确定。较大的吸积率使这两个率几乎达到平衡,但是从净值上看,我们发现,其大小比早期的水动力模拟所预测的大约2.7?倍。如果二进制文件包含两个大质量的黑洞,则吸积率可能足够大,以使一个或两个都成为活动的银河核,从而对气体在磁盘主体及其内部间隙中的物理状态产生影响。

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