Skip to main content
Article

Nonsingular Yukawa-modified black holes surrounded by dark matter in 4D-Einstein-Gauss-Bonnet gravity: Shadow and QNM studies

Yassine SekhmaniCenter for Theoretical Physics, Khazar University, 41 Mehseti Street, Baku, AZ1096, AzerbaijanN. HeidariAdam Z. KaczmarekCzęstochowa University of TechnologyJavlon RayimbaevInstitute of Theoretical Physics, National University of Uzbekistan, Tashkent, 100174, UzbekistanDominik SzczęśniakInstitute of Physics, Faculty of Science and Technology, Jan Długosz University in Czȩstochowa, 13/15 Armii Krajowej Ave., Czȩstochowa, 42200, PolandJurabek SadullayevDepartment of Technique, Urgench State University, Kh. Alimjan Str. 14, Urgench, 221100, Uzbekistan
2026en
ABI

Abstract

This paper investigates the contribution of the nonsingular Yukawa-modified potential in four-dimensional Einstein-Gauss-Bonnet (EGB) gravity, focusing on a static, spherically symmetric black hole solution. These Yukawa-type corrections are described by two parameters, β and λ , that affect Newton’s law of gravity at large distances, and by a deformation parameter, ℓ 0 , which is essential at short distances. Primarily, the strongest effect is encoded in β , which alters the total mass of the black hole with additional mass proportional to β M , imitating the effects of dark matter at large distances from the black hole. In contrast, the impact due to λ is small for astrophysical values. On the other hand, EGB gravity is ruled by the Gauss-Bonnet (GB) coupling constant α , a fundamental parameter of the theory. We pay particular attention to thermodynamic stability, critical orbits, geodesics, and quasinormal modes. The results demonstrate the stability of the black hole solution for a range of values of the GB coupling constant α . Furthermore, this study investigates null geodesic motion, namely the shadow behavior, and provides intriguing results on the size of the black hole shadow.

Identifiers

Citations and references