most citedDynamical Love Numbers for Black Holes and Beyond from Shell Effective Field Theory

2 citations · 2 across the 1 of their papers we have counts for

collaborators

5 papers

hep-th20262 cited

Dynamical Love Numbers for Black Holes and Beyond from Shell Effective Field Theory

Dimitrios Kosmopoulos, Davide Perrone, Mikhail Solon

We construct a novel effective field theory for a compact body coupled to gravity, whose key feature is that the dynamics of gravitational perturbations is explicitly determined by…

gr-qc2026

Black Hole Mergers as the Fastest Photon Ring Scramblers

D. Giataganas, G. F. Giudice, A. Ianniccari +5

Black holes are the most efficient scramblers in nature. By mapping the instantaneous mass and angular momentum of two spinless black holes in a quasi-circular binary onto those of…

gr-qc2025

Nonlinearities of Schwarzschild Black Hole Head-on Collisions

Alex Kehagias, Davide Perrone, Antonio Riotto

We derive analytically the amplitude of the quadratic quasi-normal mode generated in the ringdown stage of the gravitational waveform produced by the ultra-relativistic head-on col…

astro-ph.CO2025

The Irrelevance of Primordial Black Hole Clustering in the LVK mass range

F. Crescimbeni, V. Desjacques, G. Franciolini +6

We show that in realistic models where primordial black holes are formed due to the collapse of sizeable inflationary perturbations, their initial spatial clustering beyond Poisson…

gr-qc2025

Non-linear Quasi-Normal Modes of the Schwarzschild Black Hole from the Penrose Limit

Alex Kehagias, Davide Perrone, Antonio Riotto

The Penrose limit connects a plane wave geometry to the photon ring of a black hole, where the quasi-normal modes are located in the eikonal limit. Utilizing this simplification, w…