arXiv · 2107.05648
No evidence of kinetic screening in simulations of merging binary neutron stars beyond general relativity
Abstract
We have conducted fully relativistic simulations in a class of scalar-tensor theories with derivative self-interactions and screening of local scales. By using high-resolution shock-capturing methods and a non-vanishing shift vector, we have managed to avoid issues plaguing similar attempts in the past. We have first confirmed recent results by ourselves in spherical symmetry, obtained with an approximate approach and pointing at a partial breakdown of the screening in black-hole collapse. Then, we considered the late inspiral and merger of binary neutron stars. We found that screening tends to suppress the (subdominant) dipole scalar emission, but not the (dominant) quadrupole scalar mode. Our results point at quadrupole scalar signals as large as (or even larger than) in Fierz-Jordan-Brans-Dicke theories with the same conformal coupling, for strong-coupling scales in the MeV range that we can simulate.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Miguel Bezares, Ricard Aguilera-Miret, Lotte ter Haar, Marco Crisostomi, Carlos Palenzuela, Enrico Barausse. 2022-02-15. No evidence of kinetic screening in simulations of merging binary neutron stars beyond general relativity. https://doi.org/10.1103/physrevlett.128.091103
Cite the original work for its findings. Save a collection to share your selection of sources.