Study of relativistic hot accretion flow around Kerr-like wormhole

IF 5.3 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
Gargi Sen, Debaprasad Maity and Santabrata Das
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Abstract

We investigate the structure of relativistic, low-angular momentum, inviscid advective accretion flow in a stationary axisymmetric Kerr-like wormhole (WH) spacetime, characterized by the spin parameter (ak), the dimensionless parameter (β), and the source mass (MWH). In doing so, we self-consistently solve the set of governing equations describing the relativistic accretion flow around a Kerr-like WH in the steady state, and for the first time, we obtain all possible classes of global accretion solutions for transonic as well as subsonic flows. We study the properties of dynamical and thermodynamical flow variables and examine how the nature of the accretion solutions alters due to the change of the model parameters, namely energy (ℰ), angular momentum (λ), ak, and β. Further, we separate the parameter space in λ-ℰ plane according to the nature of the flow solutions, and study the modification of the parameter space by varying ak and β. Moreover, we retrace the parameter space in ak-β plane that allows accretion solutions containing multiple critical points. Finally, we calculate the disc luminosity (L) considering free-free emissions for transonic solutions as these solutions are astrophysically relevant and discuss the implication of this model formalism in the context of astrophysical applications.
类克尔虫洞周围相对论热吸积流研究
我们研究了静止轴对称类克尔虫洞(Kerr-like wormhole,WH)时空中相对论性、低角动量、不粘性平流吸积流的结构,其特征是自旋参数(ak)、无量纲参数(β)和源质量(MWH)。在此过程中,我们自洽地求解了描述类克尔虫洞周围相对论吸积流稳态的控制方程组,并首次获得了跨音速和亚音速流的所有可能类别的全局吸积解。我们研究了动力学和热力学流动变量的性质,并考察了吸积解的性质是如何随着模型参数(即能量(ℰ)、角动量(λ)、ak和β)的变化而改变的。此外,我们根据流动解的性质分离了λ-ℰ平面内的参数空间,并研究了通过改变ak和β对参数空间的修正。最后,我们计算了圆盘光度(L),考虑了跨声速解的自由发射,因为这些解与天体物理学有关,并讨论了这一模型形式在天体物理学应用中的意义。
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来源期刊
Journal of Cosmology and Astroparticle Physics
Journal of Cosmology and Astroparticle Physics 地学天文-天文与天体物理
CiteScore
10.20
自引率
23.40%
发文量
632
审稿时长
1 months
期刊介绍: Journal of Cosmology and Astroparticle Physics (JCAP) encompasses theoretical, observational and experimental areas as well as computation and simulation. The journal covers the latest developments in the theory of all fundamental interactions and their cosmological implications (e.g. M-theory and cosmology, brane cosmology). JCAP''s coverage also includes topics such as formation, dynamics and clustering of galaxies, pre-galactic star formation, x-ray astronomy, radio astronomy, gravitational lensing, active galactic nuclei, intergalactic and interstellar matter.
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