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首页> 外文期刊>The Astrophysical journal >CIRCUMBINARY MAGNETOHYDRODYNAMIC ACCRETION INTO INSPIRALING BINARY BLACK HOLES
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CIRCUMBINARY MAGNETOHYDRODYNAMIC ACCRETION INTO INSPIRALING BINARY BLACK HOLES

机译:循环磁氢动力学吸收成双星黑洞

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We have simulated the magnetohydrodynamic evolution of a circumbinary disk surrounding an equal-mass binary comprising two non-spinning black holes during the period in which the disk inflow time is comparable to the binary evolution time due to gravitational radiation. Both the changing spacetime and the binary orbital evolution are described by an innovative technique utilizing high-order post-Newtonian approximations. Prior to the beginning of the inspiral, the structure of the circumbinary disk is predicted well by extrapolation from Newtonian results: a gap of roughly two binary separation radii is cleared, and matter piles up at the outer edge of this gap as inflow is retarded by torques exerted by the binary; the accretion rate is roughly half its value at large radius. During inspiral, the inner edge of the disk initially moves inward in coordination with the shrinking binary, but—as the orbital evolution accelerates—the inward motion of the disk edge falls behind the rate of binary compression. In this stage, the binary torque falls substantially, but the accretion rate decreases by only 10%-20%. When the binary separation is tens of gravitational radii, the rest-mass efficiency of disk radiation is a few percent, suggesting that supermassive binary black holes could be very luminous at this stage of their evolution. Inner disk heating is modulated at a beat frequency comparable to the binary orbital frequency. However, a disk with sufficient surface density to be luminous may be optically thick, suppressing periodic modulation of the luminosity.
机译:我们已经模拟了一个圆盘的磁流体动力学演变,该圆盘围绕一个等质量的二元数,该二元数包括两个非旋转的黑洞,在此期间,由于重力辐射,圆盘的流入时间与二元演化时间相当。不断变化的时空和二进制轨道演化都通过利用高阶牛顿后近似的创新技术来描述。在吸气开始之前,通过牛顿结果的外推法可以很好地预测周向盘的结构:清除了大约两个二元分离半径的间隙,并且由于入流受阻,物质在该间隙的外边缘堆积二进制施加的扭矩;大半径时,吸积率大约是其值的一半。在吸气期间,磁盘的内边缘最初与收缩的二进制文件配合向内移动,但是-随着轨道演化的加快,磁盘边缘的向内运动落后于二进制文件压缩的​​速率。在此阶段,二元转矩显着下降,但是吸积率仅下降10%-20%。当二元分离是几十个引力半径时,圆盘辐射的静质量效率为百分之几,这表明超大质量二元黑洞在其演化的这一阶段可能非常发光。内盘加热以与二进制轨道频率相当的拍频进行调制。但是,具有足够表面密度以发光的光盘可能在光学上较厚,从而抑制了亮度的周期性调制。

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