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Near-horizon quasinormal modes of charged scalar around a general spherically symmetric black hole

机译:一般球对称黑洞周围带电标量的准准准模式

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We study the quasinormal modes (QNMs) of a charged scalar in the static spherically symmetric black hole background near the event and cosmological horizon. Starting with numerical analysis of the QNMs of black hole in the dRGT massive gravity, the mathematical tool called the asymptotic iteration method (AIM) is used to calculate the quasinormal frequencies. The parameters such as the mass and charge of the black hole, the cosmological constant, the coefficient of the linear term from massive gravity γ , and the mass of the scalar are varied to study the behavior of the QNMs. We found the tower pattern of the near-horizon quasinormal frequencies from the numerical results by AIM where the real parts depend only on product of the charge of the black hole and the scalar field and the imaginary parts depend only on the surface gravity. To confirm the numerical finding, we analytically determine the exact QNMs of the charged scalar near the horizons of any static spherically symmetric black hole background in the simple universal forms; ω = q Q r h + i κ h n and ω = q Q r c + i | κ c | n where n is a nonpositive integer and κ h , c is the surface gravity, for the event and cosmological horizon respectively. Extending our analysis, we also compute the four towers of the near-horizon QNMs that can reach the far region. The four kinds of QNMs converge to certain asymptotic values with equally spacing imaginary parts and the real parts proportional to q Q / r h , c . These modes do not match with the all-region (WKB) modes of the real background since they originate from the linearly approximated metric.
机译:我们在事件和宇宙视界附近的静态球对称黑洞背景下研究带电标量的准正规模(QNMs)。从对dRGT大重力中黑洞的QNM进行数值分析开始,使用一种称为渐近迭代法(AIM)的数学工具来计算准正态频率。改变诸如黑洞的质量和电荷,宇宙常数,来自大重力γ的线性项的系数和标量的质量等参数来研究QNM的行为。我们从AIM的数值结果中发现了近水平准法向频率的塔型,其中实部仅取决于黑洞和标量场的乘积,而虚部仅取决于表面重力。为了证实这一数值发现,我们以简单的通用形式,通过分析确定了任何静态球对称黑洞背景的地平线附近带电标量的精确QNM值。 ω= q Q r h + iκh n和ω= q Q r c + i | κc | n其中n是一个非正整数,κh,c是表面重力,分别对应于事件和宇宙视界。扩展我们的分析,我们还计算了可以到达远端区域的近水平QNM的四个塔。四种QNM收敛到某些渐近值,它们的虚部和实部的等距间隔与q Q / r h,c成正比。这些模式与真实背景的所有区域(WKB)模式不匹配,因为它们源自线性近似度量。

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