4.7 Article

Quasinormal modes of test fields around regular black holes

Journal

PHYSICAL REVIEW D
Volume 91, Issue 8, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevD.91.083008

Keywords

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Funding

  1. Silesian University [SGS/23/2013]
  2. Albert Einstein Centre for Gravitation and Astrophysics for Czech Science Foundation [14-37086G]
  3. UzAS [F2-FA-F113, EF2-FA-0-12477, F2-FA-F029]
  4. ICTP [OEA-PRJ-29, OEA-NET-76]
  5. Volkswagen Stiftung [86 866]

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We study scalar, electromagnetic, and gravitational test fields in the Hayward, Bardeen, and Ayon-BeatoGarcia regular black hole spacetimes and demonstrate that the test fields are stable in all of these spacetimes. Using the sixth order WKB approximation of the linear axial perturbative scheme, we determine dependence of the quasinormal mode (QNM) frequencies on the characteristic parameters of the test fields and the spacetime charge parameters of the regular black holes. We give also the grey body factors, namely, the transmission and reflection coefficients of scattered scalar, electromagnetic, and gravitational waves. We show that the damping of the quasinormal modes in regular black hole spacetimes is suppressed compared to the case of Schwarzschild black holes, and increasing the charge parameter of the regular black holes increases reflection and decreases the transmission factor of the incident waves for each of the test fields.

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