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October 23, 2025Physical Review Letters12 citationsOpen Access

Late-Time Tails in Nonlinear Evolutions of Merging Black Holes

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MAMarina de AmicisHRHannes R. RüterGCG. Carullo

Key Points

  • Prominent late-time gravitational-wave tails observed in binary black holes, enhancing detection potential.
  • Results indicate high accuracy in numerical simulations of merging black holes with mass ratios near unity.
  • Analysis of gravitational waves utilized advanced numerical relativity methods and validated through extensive testing.
  • Findings support the predictive capabilities of black hole perturbation theory, emphasizing its relevance to gravitational dynamics.

Abstract

We uncover late-time gravitational-wave tails in fully nonlinear 3+1 dimensional numerical relativity simulations of merging black holes, using the highly accurate p code. We achieve this result by exploiting the strong magnification of late-time tails due to binary eccentricity, recently observed in perturbative evolutions, and showcase here the tail presence in head-on configurations for several mass ratios close to unity. We validate the result through a large battery of numerical tests and detailed comparison with a perturbative evolution, which display striking agreement with full nonlinear ones in the ringdown regime, and very similar tail morphologies. Our results offer yet another confirmation of the highly predictive power of black hole perturbation theory in the presence of a source, even when applied to nonlinear solutions. The late-time tail signal is much more prominent than anticipated until recently, and possibly within reach of gravitational-wave detector measurements, unlocking observational investigations of an additional set of general relativistic predictions on the long-range gravitational dynamics.

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Cite This Study

Amicis et al. (2025) studied this question.

synapsesocial.com/papers/68f9f86eb2c35e10cc4e3d6dhttps://doi.org/10.1103/2brx-xnyr
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