Articles

Vanishing of quadratic Love numbers of Schwarzschild black holes

Iteanu, Simon; Riva, Massimiliano Maria; Santoni, Luca; Savić, Nikola; Vernizzi, Filippo

The induced conservative tidal response of self-gravitating objects in general relativity is parametrized in terms of a set of coefficients, which are commonly referred to as Love numbers. For asymptotically-flat black holes in four spacetime dimensions, the Love numbers are famously zero in the static regime. In this work, we show that this result continues to hold upon inclusion of nonlinearities in the theory for Schwarzschild black holes. We first solve the quadratic Einstein equations in the static limit to all orders in the multipolar expansion, including both even and odd perturbations. We show that the second-order solutions take simple analytic expressions, generically expressible in the form of finite polynomials. We then define the quadratic Love numbers at the level of the point-particle effective field theory. By performing the matching with the full solution in general relativity, we show that quadratic Love number coefficients are zero to all orders in the derivative expansion, like the linear ones.

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Also Published In

Title
Journal of High Energy Physics
DOI
https://doi.org/10.1007/JHEP02(2025)174

More About This Work

Academic Units
Physics
Published Here
March 12, 2025

Notes

Black Holes, Classical Theories of Gravity, Effective Field Theories