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Resonance Spectra of Caged Stringy Black Hole and Its Spectroscopy

机译:笼状黑洞的共振光谱及其光谱学

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Maggiore’s method (MM), which evaluates the transition frequency that appears in the adiabatic invariant from the highly dampedquasinormal mode (QNM) frequencies, is used to investigate the entropy/area spectra of the Garfinkle–Horowitz–Strominger black hole (GHSBH). Instead of the ordinary QNMs, we compute the boxed QNMs (BQNMs) that are the characteristic resonance spectra of the confined scalar fields in the GHSBH geometry. For this purpose, we assume that the GHSBH has a confining cavity (mirror) placed in the vicinity of the event horizon. We then show how the complex resonant frequencies of the caged GHSBH are computed using the Bessel differential equation that arises when the scalar perturbations around the event horizon are considered. Although the entropy/area is characterized by the GHSBH parameters, their quantization is shown to be independent of those parameters. However, both spectra are equally spaced.
机译:Maggiore方法(MM)用于评估绝热不变量中从高阻尼准正态模(QNM)频率出现的跃迁频率,该方法用于研究Garfinkle–Horowitz–Strominger黑洞(GHSBH)的熵/面积谱。代替普通的QNM,我们计算盒装QNM(BQNM),它们是GHSBH几何形状中受限标量场的特征共振谱。为此,我们假设GHSBH在事件层附近放置了一个封闭腔(镜)。然后,我们展示了如何使用贝塞尔微分方程计算笼状GHSBH的复共振频率,当考虑事件视界周围的标量摄动时,该方程会出现。尽管熵/区域由GHSBH参数表征,但显示它们的量化与这些参数无关。但是,两个光谱均等间隔。

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