Yayınlanmış 1 Ocak 2025 | Sürüm v1
Dergi makalesi Açık

Absorption, scattering, geodesics, shadows and lensing phenomena of black holes in effective quantum gravity

  • 1. Khazar Univ, Ctr Theoret Phys, 41 Mehseti St, AZ-1096 Baku, Azerbaijan
  • 2. Univ Fed Paraiba, Dept Fis, Caixa Postal 5008, BR-58051970 Joao Pessoa, PB, Brazil
  • 3. Mapua Univ, Phys Dept, 658 Muralla St, Manila 1002, Philippines
  • 4. Eastern Mediterranean Univ, Phys Dept, Via Mersin 10, TR-99628 Famagusta, North Cyprus, Turkiye

Açıklama

In this work, we investigate the signatures of black holes within an effective quantum gravity framework recently proposed in the literature (Cong et al., 2024). We begin by outlining the general setup, highlighting the two distinct models under consideration. This includes a discussion of their general properties, interpretations, and the structure of the event and inner horizons. We then examine the behavior of light in this context, analyzing geodesics, the photon sphere, and shadow formation. To validate our results, we estimate lower bounds for the shadow radius based on observational data from Sgr A* and M87*. Subsequently, we derive the partial radial wave equation for scalar perturbations, enabling us to study the absorption cross-section in both low- and high-frequency regimes. Additionally, we evaluate the greybody factors and provide bounds for both bosonic and fermionic fields. Finally, we present a detailed analysis of gravitational lensing in both the weak and strong deflection limits. For the weak deflection regime, the Gauss-Bonnet theorem is employed, while for the strong deflection limit, the Tsukamoto approach is utilized.

Dosyalar

bib-0ea7524c-630d-4622-b141-b2f05c850f7f.txt

Dosyalar (212 Bytes)

Ad Boyut Hepisini indir
md5:0a2f05300c6a86518178b00bbaa486ef
212 Bytes Ön İzleme İndir