Charged Dirac perturbations on Reissner-Nordström black holes in a cavity: quasinormal modes with Robin boundary conditions
arXiv:2512.24006
Abstract
We investigate charged Dirac quasinormal spectra on Reissner-Nordström black holes in a mirror-like cavity. For this purpose, we first derive charged Dirac equations, and \textit{two} sets of Robin boundary conditions following the vanishing energy flux principle. The Dirac spectra are then computed both analytically and numerically. Our results reveal a symmetry hidden in the Dirac spectra between two boundary conditions. Moreover, when the cavity is placed close to the event horizon , we identify that, in the neutral background the Dirac spectra asymptote to [] for the first [second] boundary condition; while in the charged background the real part of charged Dirac spectra asymptote to for both boundary conditions; where is the overtone number, and are charges for the field and for the background. In particular, we uncover a striking anomalous decay pattern, the excited modes decay \textit{slower} than the fundamental mode, when the charge coupling is large. Our results further illustrate the robustness of vanishing energy flux principle, which are applicable not only to anti-de Sitter black holes but also to black holes in a cavity.
15 pages, 8 figures, to appear in EPJC