Quasinormal modes of the Kazakov--Solodukhin quantum-corrected black hole: a spectral analysis
We compute quasinormal modes of the Kazakov--Solodukhin quantum-corrected black hole using a high-precision Chebyshev spectral method. After factoring out the quasinormal mode asymptotics at the event horizon and at spatial infinity, the radial problem is reduced to a quadratic matrix pencil for the dimensionless frequency $Ω=Mω$. We apply this framework to minimally coupled scalar perturbations, electromagnetic perturbations, a non-minimally coupled scalar field, and an axial effective source Regge--Wheeler-type gravitational sector. The latter is treated as an effective axial model, rather than as the full gravitational perturbation problem, because the Kazakov--Solodukhin spacetime is not Ricci flat. Our results reproduce the available WKB, time-domain, Mashhoon, and asymptotic-iteration benchmarks in their common regimes of validity, after accounting for the different normalisations used in the literature. The spectral method also resolves additional overtones and candidate purely imaginary overdamped roots. In several sectors, these roots exhibit a spacing scale close to $Mκ=1/4$, with occasional multiple gaps in the retained numerical sequence. In the near-extremal, but still subextremal, regime, the detected purely imaginary branches approach an approximately equally spaced surface-gravity-scaled ladder, while the oscillatory spectra remain sector dependent. Within the parameter ranges and resolutions considered here, all retained modes have $\ImΩ<0$, and no stable growing mode is detected.
展开 ▾Kazakov-Solodukhin量子修正黑洞的准正规模式:谱分析 · 使用Chebyshev谱方法高精度计算了Kazakov-Solodukhin量子修正黑洞的准正规模式,涵盖标量、电磁和引力扰动,并分析了纯虚数过阻尼根及其在近极端区的行为。
预印本 2026-07-22 · 接收 2026-07-07 · 刊出 2026-07-21 · 收录 2026-07-23