论文标题

声表面重力对圆盘厚度的依赖性,以吸收天体物理黑洞

Dependence of acoustic surface gravity on disc thickness for accreting astrophysical black holes

论文作者

Maity, Susovan, Tarafdar, Pratik, Shaikh, Md. Arif, Das, Tapas K.

论文摘要

对于沿垂直方向保持静水平衡的轴向对称积聚,我们研究了嵌入式声学几何形状的特征如何取决于背景KERR度量,以及这种依赖性如何受到物质流的厚度的三种不同表达。我们首先获得声音点的位置和声音点之间的固定冲击。然后,我们线性地扰动流量以获得声学时空的相应度量元件。因此,我们构建了因果结构,以确定声音点和冲击实际上是模拟黑洞类型和白洞类型的地平线。我们最终计算出旋转黑洞的旋转角动量的函数,以计算出本工作中考虑的三个不同流动厚度的旋转角动量的函数。我们发现,对于某些流量模型,固有的声学几何形状原则上可以扩展到天体物理黑洞的外部重力范围,但不能超出一定的截断半径,因为这是由于相应流的厚度函数的表达所施加的。

For axially symmetric accretion maintained in hydrostatic equilibrium along the vertical direction, we investigate how the characteristic features of the embedded acoustic geometry depends on the background Kerr metric, and how such dependence is governed by three different expressions of the thickness of the matter flow. We first obtain the location of the sonic points and stationary shock between the sonic points. We then linearly perturb the flow to obtain the corresponding metric elements of the acoustic space-time. We thus construct the causal structure to establish that the sonic points and the shocks are actually the analogue black hole type and white hole type horizons, respectively. We finally compute the value of the acoustic surface gravity as a function of the spin angular momentum of the rotating black hole for three different flow thicknesses considered in the present work. We find that for some flow models, the intrinsic acoustic geometry, although in principle may be extended up to the outer gravitational horizon of the astrophysical black hole, cannot be constructed beyond a certain truncation radius as imposed by the expressions of the thickness function of the corresponding flow.

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