activity
20242026
most citedMaster field equations for spherically symmetric gravitational fields beyond general relativity

8 citations · 23 across the 9 of their papers we have counts for

collaborators

10 papers

gr-qc2026

Effective geometrostatics of spherical stars beyond general relativity

Julio Arrechea, Raúl Carballo-Rubio, Matt Visser

We provide a set of general tools to study the problem of stellar equilibrium in any gravitational theory in which spherically symmetric spacetimes satisfy master field equations t…

gr-qc2026

Charging up regular black holes

Raúl Carballo-Rubio, Chiara Coviello, Vania Vellucci

We present a general construction of charged regular black holes as solutions of a generalization of the Einstein--Maxwell field equations in spherical symmetry in which the Einste…

gr-qc2026

Semiclassical regularity of compact trapped regions: From dynamical horizons to inner extremality

Raúl Carballo-Rubio, Francesco Di Filippo, Stefano Liberati +1

In eternal black-hole spacetimes, inner horizons are Cauchy horizons and are generically unstable. For non-extremal inner horizons, this includes both the classical mass-inflation…

gr-qc2026

Imprints of quantum vacuum fluctuations on the gravitational field of a spherical mass

Raúl Carballo-Rubio, Francesco Di Filippo, Shinji Mukohyama +1

The Schwarzschild geometry, describing the gravitational field of a spherical mass in classical vacuum, is one of the most famous vacuum solutions of the Einstein field equations.…

gr-qc2026

Macroscopic backreaction of the trace anomaly on classical vacuum backgrounds

Raúl Carballo-Rubio, Francesco Di Filippo, Shinji Mukohyama +1

We study the backreaction of quantum fields in the Boulware vacuum state on the Schwarzschild geometry, using the Riegert--Mottola--Vaulin renormalized stress-energy tensor derived…

gr-qc20264 cited

Regular black holes from pure gravity in four dimensions

Johanna Borissova, Raúl Carballo-Rubio

We derive static spherically symmetric regular black holes as vacuum solutions to purely gravitational theories in four dimensions. To that end, we construct four-dimensional non-p…