Del 13 de enero de 2026 al 14 de julio de 2026
FM9/109
America/Mexico_City timezone

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

12 may. 2026 14:00
2h
SALA AUDIOVISUAL (FM9/109)

SALA AUDIOVISUAL

FM9/109

FACULTAD DE CIENCIAS FÍSICO MATEMÁTICAS, CIUDAD UNIVERSITARIA, BUAP

Ponente

Dr. Dimitrios Kosmopoulos (CERN)

Descripción

A key property that shapes the gravitational waveform of binary systems is the tidal deformability of their constituents, quantified by the Love numbers. In modern treatments of the gravitational two-body problem, the binary dynamics are described within an effective field theory (EFT), where Love numbers enter as Wilson coefficients encoding the finite-size response of each object. In this talk, I will introduce Shell Effective Field Theory, a new framework for computing the classical gravitational dynamics of compact objects, with particular emphasis on extracting Love numbers. By combining techniques from quantum field theory with solutions to black-hole perturbation theory, Shell EFT circumvents the loop integrations that constitute the main bottleneck in conventional approaches. I will present new results for dynamical Love numbers of generic compact objects through order G^9, corresponding to an eight-loop calculation, and conjecture their all-orders structure in the case of a Schwarzschild black hole.

Materiales de la presentación

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