论文标题

BREMSSTRAHLUNG在GRMHD模型中积聚黑洞

Bremsstrahlung in GRMHD models of accreting black holes

论文作者

Yarza, R., Wong, G. N., Ryan, B. R., Gammie, C. F.

论文摘要

Bremsstrahlung在热积聚流动中的发射中的作用尚未完全理解。为了评估Bremsstrahung相对于其他辐射过程的重要性,我们计算了围绕逐渐增强超级质量黑洞在内的增生磁盘的光谱能量分布(SED),包括同步辐射,逆转池散射和Bremsstrahlung。我们计算(i)四个轴对称辐射的一般相对论磁性水力动力学(RADGRMHD)$ 10^{8} m _ {\ odot} $黑洞,其积聚速率在$ 10^{ - 8} $ 10^{ - 5} \ dot {m} _ {\ text {edd}} $,(ii)M87 $^ast $的四个轴对称radgrmhd模拟,具有不同的dimension spin $ a_ \ ast $ and ast $ and Black Hole and Black Hole质量和(III),以及(III)a 3d grmhd simal a $ simpl a $ a $^。以$ 10^{ - 8} \ dot {m} _ {\ text {edd}} $,大多数发光度是同步辐射,而$ 10^{ - 5} \ dot {m} _ {\ dot {m} _ {\ text {edd}}。在大多数型号中,Bremsstrahlung在$ 512 \ text {kev} $附近占主导地位。在M87 $^\ ast $模型中,如果$ a _ {\ ast} = 0.5 $,则Bremsstrahlung在SED的这一部分中占主导地位,但如果$ a _ {\ ast} = 0.9375 $,则compton散射占主导地位。由于散射比Bremsstrahlung更可变,因此该结果表明$ 512 \ text {kev} $可变性可能是黑洞旋转的诊断。在附录中,我们比较了文献中发现的一些Bremsstrahlung公式。

The role of bremsstrahlung in the emission from hot accretion flows around slowly accreting supermassive black holes is not thoroughly understood. In order to appraise the importance of bremsstrahlung relative to other radiative processes, we compute spectral energy distributions (SEDs) of accretion disks around slowly accreting supermassive black holes including synchrotron radiation, inverse Compton scattering, and bremsstrahlung. We compute SEDs for (i) four axisymmetric radiative general relativistic magnetohydrodynamics (RadGRMHD) simulations of $10^{8}M_{\odot}$ black holes with accretion rates between $10^{-8}\dot{M}_{\text{Edd}}$ and $10^{-5}\dot{M}_{\text{Edd}}$, (ii) four axisymmetric RadGRMHD simulations of M87$^\ast$ with varying dimensionless spin $a_\ast$ and black hole mass, and (iii) a 3D GRMHD simulation scaled for Sgr A$^\ast$. At $10^{-8}\dot{M}_{\text{Edd}}$, most of the luminosity is synchrotron radiation, while at $10^{-5}\dot{M}_{\text{Edd}}$ the three radiative processes have similar luminosities. In most models, bremsstrahlung dominates the SED near $512\text{ keV}$. In the M87$^\ast$ models, bremsstrahlung dominates this part of the SED if $a_{\ast} = 0.5$, but inverse Compton scattering dominates if $a_{\ast}= 0.9375$. Since scattering is more variable than bremsstrahlung, this result suggests that $512\text{ keV}$ variability could be a diagnostic of black hole spin. In the appendix, we compare some bremsstrahlung formulae found in the literature.

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