论文标题

活跃银河核中积聚磁盘中的超新星爆炸:三维模型

Supernova Explosions in Accretion Disks in Active Galactic Nuclei: Three-Dimensional Models

论文作者

Moranchel-Basurto, A., Sánchez-salcedo, F. J., Chametla, Raúl O., Velázquez, P. F.

论文摘要

超新星(SN)爆炸可能会影响活性银河核(AGN)中周环盘的结构和进化。以前的一些研究表明,SN爆炸的速率相对较低,可以在1 PC量表以内的AGN积聚磁盘中提供0.1和1之间的α粘度值。为了测试这种可能性,我们提供了一些分析量表,这些分析量表是嵌入差异旋转光滑磁盘中的SN残留物的演变。我们使用三维流体动力学模拟对估计值进行校准,在该模拟中,气体被建模为具有指数$γ$的绝热。我们的模拟适合于一个事实,即SN从磁盘逃脱到电晕的势头的一小部分。基于这些结果,我们计算了SN爆炸对有效α粘度的贡献,该爆炸在Model Agn积聚磁盘中用$α_{SNE} $表示,在该磁盘中,积分由局部粘度$α$驱动。我们发现,对于具有$ 〜10^8M _ {\ cdot} $的中央黑洞的AGN星系,并且具有粘度$α= 0.1 $的磁盘,SN爆炸的贡献可能高如$α__{sne} \ simeq 0.02 $,提供该$α\ gtrsim $ gtrsim 1.1 $ 1.1 $。另一方面,在动量保护极限中,当SN残留的内部压力忽略时,这是有效的,我们发现$α_SNE\ Lessim 6 \ times10^{ - 4} $。

Supernova (SN) explosions can potentially affect the structure and evolution of circumnuclear disks in active galactic nuclei (AGN). Some previous studies have suggested that a relatively low rate of SN explosions can provide an effective value of alpha viscosity between 0.1 and 1 in AGN accretion disks within 1 pc scale. In order to test this possibility, we provide some analytic scalings of the evolution of a SN remnant embedded in a differentially rotating smooth disk. We calibrate our estimates using three-dimensional hydrodynamical simulations where the gas is modeled as adiabatic with index $γ$. Our simulations are suited to include the fact that a fraction of the momentum injected by the SN escapes from the disk into the corona. Based on these results, we calculate the contribution of SN explosions to the effective alpha viscosity, denoted by $α_{SNe}$, in a model AGN accretion disk, where accretion is driven by the local viscosity $α$. We find that for AGN galaxies with a central black hole of $~ 10^8M_{\cdot}$ and a disk with viscosity $α=0.1$, the contribution of SN explosions may be as large as $α_{SNe} \simeq 0.02$, provided that $α\gtrsim 1.1$. On the other hand, in the momentum conservation limit, which is valid when the push by the internal pressure of the SN remnant is negligible, we find $α_SNe \lesssim 6\times10^{-4}$.

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