paper

Quasinormal frequencies and greybody factors for axial perturbations of dilaton-Euler-Heisenberg de Sitter black holes

arXiv:2608.15111 · doi:10.1088/1674-1137/ae9e9c

Abstract

We investigate the quasinormal modes (QNMs) and greybody factors of dilaton-Euler-Heisenberg (dEH) de Sitter (dS) black holes in string-inspired Euler-Heisenberg gravity. Since the axial gravitational and electromagnetic perturbations decouple, we treat them independently. By applying the asymptotic iteration method (AIM) alongside a sixth-order WKB approximation, we compute the quasinormal frequencies and find excellent agreement between the two approaches. We also find that the QNM spectra depend sensitively on the magnetic charge , cosmological constant , and nonlinear coupling , with a notable topological anomaly appearing in the electromagnetic frequency trajectories. Additionally, larger values of or the multipole number generally suppress wave transmission, while the electromagnetic sector with exhibits an anomalous response.

To be published in Chinese Physics C