Weak gravity conjecture validation with photon spheres of quantum corrected Reissner–Nordstrom–AdS black holes in Kiselev spacetime

IF 4.8 2区 物理与天体物理 Q2 PHYSICS, PARTICLES & FIELDS The European Physical Journal C Pub Date : 2025-02-04 DOI:10.1140/epjc/s10052-025-13857-z
Mohammad Reza Alipour, Mohammad Ali S. Afshar, Saeed Noori Gashti, Jafar Sadeghi
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Abstract

In this study, we investigate the Weak Gravity Conjecture (WGC) in the context of quantum-corrected Reissner–Nordstrom–AdS (RN-AdS) black holes within Kiselev spacetime. Our focus is on photon spheres, which serve as markers for stable and unstable photon spheres. We confirm the validity of the WGC by demonstrating that quantum corrections do not alter the essential charge-to-mass ratio, thereby supporting the conjecture’s universality. Our analysis reveals that black holes with a charge greater than their mass \((Q > M)\) possess photon spheres or exhibit a total topological charge of the photon sphere \((\text {PS} = -1),\) which upholds the WGC. This finding is significant as it reinforces the conjecture’s applicability even in the presence of quantum corrections. Furthermore, we examine various parameter configurations to understand their impact on the WGC. Specifically, we find that configurations with \(\omega = -\frac{1}{3}\) and \(\omega = -1\) maintain the conjecture, indicating that these values do not disrupt the charge-to-mass ratio required by the WGC. However, for \(\omega = -\frac{4}{3},\) the conjecture does not hold, suggesting that this particular parameter value leads to deviations from the expected behavior. These results open new directions for research in quantum gravity, as they highlight the importance of specific parameter values in maintaining the WGC. The findings suggest that while the WGC is robust under certain conditions, there are scenarios where it may be challenged, prompting further investigation into the underlying principles of quantum gravity.

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Kiselev时空中量子校正Reissner-Nordstrom-AdS黑洞光子球弱引力猜想验证
在本研究中,我们在Kiselev时空中量子校正Reissner-Nordstrom-AdS (RN-AdS)黑洞的背景下研究了弱引力猜想(WGC)。我们的重点是光子球,它可以作为稳定和不稳定光子球的标记。我们通过证明量子修正不会改变基本电荷质量比来证实WGC的有效性,从而支持了该猜想的普适性。我们的分析表明,电荷大于其质量\((Q > M)\)的黑洞拥有光子球或表现出光子球的总拓扑电荷\((\text {PS} = -1),\),从而支撑WGC。这一发现意义重大,因为它加强了该猜想的适用性,即使在存在量子修正的情况下。此外,我们还研究了各种参数配置,以了解它们对WGC的影响。具体来说,我们发现\(\omega = -\frac{1}{3}\)和\(\omega = -1\)的配置维持了猜想,表明这些值不会破坏WGC所需的电荷质量比。然而,对于\(\omega = -\frac{4}{3},\),这个猜想并不成立,这表明这个特定的参数值会导致偏离预期的行为。这些结果为量子引力的研究开辟了新的方向,因为它们强调了特定参数值对维持WGC的重要性。这些发现表明,虽然WGC在某些条件下是稳健的,但在某些情况下它可能会受到挑战,这促使人们进一步研究量子引力的基本原理。
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来源期刊
The European Physical Journal C
The European Physical Journal C 物理-物理:粒子与场物理
CiteScore
8.10
自引率
15.90%
发文量
1008
审稿时长
2-4 weeks
期刊介绍: Experimental Physics I: Accelerator Based High-Energy Physics Hadron and lepton collider physics Lepton-nucleon scattering High-energy nuclear reactions Standard model precision tests Search for new physics beyond the standard model Heavy flavour physics Neutrino properties Particle detector developments Computational methods and analysis tools Experimental Physics II: Astroparticle Physics Dark matter searches High-energy cosmic rays Double beta decay Long baseline neutrino experiments Neutrino astronomy Axions and other weakly interacting light particles Gravitational waves and observational cosmology Particle detector developments Computational methods and analysis tools Theoretical Physics I: Phenomenology of the Standard Model and Beyond Electroweak interactions Quantum chromo dynamics Heavy quark physics and quark flavour mixing Neutrino physics Phenomenology of astro- and cosmoparticle physics Meson spectroscopy and non-perturbative QCD Low-energy effective field theories Lattice field theory High temperature QCD and heavy ion physics Phenomenology of supersymmetric extensions of the SM Phenomenology of non-supersymmetric extensions of the SM Model building and alternative models of electroweak symmetry breaking Flavour physics beyond the SM Computational algorithms and tools...etc.
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