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Quasinormal modes and phase transitions of regular black holes

机译:普通黑洞的新型模式和相位过渡

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By applying the dimensionless scheme, we investigate the quasinormal modes and phase transitions analytically for three types of regular black holes. The universal deviations to the first law of mechanics in regular black holes are proved. Meanwhile, we verify that second order phase transitions and Davies points still exist in these three models. In addition, we calculate their quasinormal modes in the eikonal limit by applying the light ring/quasinormal mode correspondence, and discuss the spiral-like shapes and the relations between the quasinormal modes and phase transitions. As the main result, we show that spiral-like shapes in the complex frequency plane are closely related to the parameterization, namely in some particular units the spiral-like shapes will emerge in the models, which may not be of the spiral behaviors reported by other authors. We also discover a universal property of regular black holes, i.e., the imaginary parts of their QNMs do not vanish for the extreme cases, which does not appear in singular black holes, such as the Reissner-Nordstr?m and Kerr black holes, etc.
机译:通过应用无量纲方案,我们研究了三种类型的常规黑洞分析的以正式模式和相位过渡。证明了与常规黑洞中第一力学定律的通用偏差。同时,我们核实这三种模型中仍然存在二阶阶段转换和戴维斯点。此外,我们通过施加光环/以异种模式对应,并讨论螺旋形状和逐相转变之间的关系和相位过渡之间的尖锐形状和旋转模式和相变的关系。作为主要结果,我们表明复杂频率平面中的螺旋形状与参数化密切相关,即在某些特定的单元中,螺旋形状将出现在模型中,这可能不是由螺旋行为报告的螺旋形状其他作者。我们还发现普通黑洞的通用属性,即他们的Qnms的虚部不会消失,不会出现在奇异的黑洞中,例如Reissner-Nordstr?M和KERR黑洞等。

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