Hyperboloidal approach to quasinormal modes
Oscillations of black hole spacetimes exhibit divergent behavior near the bifurcation sphere and spatial infinity. In contrast, these oscillations remain regular when evaluated near the event horizon and null infinity. The hyperboloidal approach provides a natural framework to bridge these regions s...
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Published in | Frontiers in physics Vol. 12 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
Frontiers Media S.A
17.01.2025
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Online Access | Get full text |
ISSN | 2296-424X 2296-424X |
DOI | 10.3389/fphy.2024.1497601 |
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Abstract | Oscillations of black hole spacetimes exhibit divergent behavior near the bifurcation sphere and spatial infinity. In contrast, these oscillations remain regular when evaluated near the event horizon and null infinity. The hyperboloidal approach provides a natural framework to bridge these regions smoothly, resulting in a geometric regularization of time-harmonic oscillations, known as quasinormal modes (QNMs). This review traces the development of the hyperboloidal approach to QNMs in asymptotically flat spacetimes, emphasizing both the physical motivation and recent advancements in the field. By providing a geometric perspective, the hyperboloidal approach offers an elegant framework for understanding black hole oscillations, with implications for improving numerical simulations, stability analysis, and the interpretation of gravitational wave signals. |
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AbstractList | Oscillations of black hole spacetimes exhibit divergent behavior near the bifurcation sphere and spatial infinity. In contrast, these oscillations remain regular when evaluated near the event horizon and null infinity. The hyperboloidal approach provides a natural framework to bridge these regions smoothly, resulting in a geometric regularization of time-harmonic oscillations, known as quasinormal modes (QNMs). This review traces the development of the hyperboloidal approach to QNMs in asymptotically flat spacetimes, emphasizing both the physical motivation and recent advancements in the field. By providing a geometric perspective, the hyperboloidal approach offers an elegant framework for understanding black hole oscillations, with implications for improving numerical simulations, stability analysis, and the interpretation of gravitational wave signals. |
Author | Zenginoğlu, Anıl Panosso Macedo, Rodrigo |
Author_xml | – sequence: 1 givenname: Rodrigo surname: Panosso Macedo fullname: Panosso Macedo, Rodrigo – sequence: 2 givenname: Anıl surname: Zenginoğlu fullname: Zenginoğlu, Anıl |
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CitedBy_id | crossref_primary_10_1007_s10714_025_03364_7 crossref_primary_10_1103_PhysRevD_111_044066 crossref_primary_10_1007_s10714_025_03378_1 crossref_primary_10_1103_PhysRevD_111_064026 |
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