Mutual influence of photon sphere and non-commutative parameter in various non-commutative black holes: Towards evidence for WGC

IF 6.4 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Physics of the Dark Universe Pub Date : 2025-02-01 DOI:10.1016/j.dark.2025.101814
Mohammad Ali S. Afshar, Jafar Sadeghi
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Abstract

Non-commutative black holes (NCBH), due to the non-commutativity of spacetime coordinates, lead to a modification of the spacetime metric. By replacing the Dirac delta function with a Gaussian distribution, the mass is effectively smeared, eliminating point-like singularities. Our objective is to investigate the impact of this change on spacetime geodesics, including photon spheres and time-like orbits. We will demonstrate how the photon sphere can serve as a tool to classify spacetime, illustrating the influence of the NC parameter and constraining its values in various modes of these black holes. Additionally, using this classification, we will show how the addition of the nonlinear Einstein–Born–Infeld (BI) field to the model enhances its physical alignment with reality compared to the charged model. In the dS BI model, we will show how the study of the effective potential and photon sphere can provide insights into the initial structural status of the model, thereby establishing this potential as an effective tool for examining the initial conditions of black holes. Finally, by examining super-extremality conditions, we will show that the AdS BI model, with the necessary conditions, can be a suitable candidate for studying and observing the effects of the Weak Gravity Conjecture (WGC).
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各种非对易黑洞中光子球和非对易参数的相互影响:关于WGC的证据
非交换黑洞(NCBH)由于时空坐标的非交换性,导致时空度规的修正。通过用高斯分布代替狄拉克函数,有效地涂抹了质量,消除了点状奇点。我们的目标是研究这种变化对时空测地线的影响,包括光子球和类时轨道。我们将演示光子球如何作为一种工具来对时空进行分类,说明NC参数的影响以及在这些黑洞的各种模式下限制其值。此外,使用这种分类,我们将展示与带电模型相比,向模型添加非线性爱因斯坦-玻恩菲尔德(BI)场如何增强其与现实的物理一致性。在dS BI模型中,我们将展示有效势和光子球的研究如何提供对模型初始结构状态的见解,从而将该势建立为检查黑洞初始条件的有效工具。最后,通过研究超极值条件,我们将证明AdS BI模型在必要条件下可以成为研究和观测弱引力猜想(WGC)效应的合适候选者。
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来源期刊
Physics of the Dark Universe
Physics of the Dark Universe ASTRONOMY & ASTROPHYSICS-
CiteScore
9.60
自引率
7.30%
发文量
118
审稿时长
61 days
期刊介绍: Physics of the Dark Universe is an innovative online-only journal that offers rapid publication of peer-reviewed, original research articles considered of high scientific impact. The journal is focused on the understanding of Dark Matter, Dark Energy, Early Universe, gravitational waves and neutrinos, covering all theoretical, experimental and phenomenological aspects.
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