activity
20102026
most citedThe Science of the Einstein Telescope

97 citations · 712 across the 52 of their papers we have counts for

collaborators
Showing 2021Show all

8 papers · 1 filter

gr-qc2021

Polish Doughnuts around Scalarized Kerr Black Holes

Matheus C. Teodoro, Lucas G. Collodel, Daniela Doneva +3

In this work we aim to investigate non-mainstream thick tori configurations around Kerr Black Holes with Scalar Hair (KBHsSH). For that goal, we provide a first approach using cons…

gr-qc2021★ 2 cited

Beyond the spontaneous scalarization: New fully nonlinear dynamical mechanism for formation of scalarized black holes

Daniela D. Doneva, Stoytcho S. Yazadjiev

In the present letter we show the existence of a fully nonlinear dynamical mechanism for the formation of scalarized black holes which is different from the spontaneous scalarizati…

gr-qc2021

The missing link in gravitational-wave astronomy: A summary of discoveries waiting in the decihertz range

Manuel Arca Sedda, Christopher P L Berry, Karan Jani +25

Since 2015 the gravitational-wave observations of LIGO and Virgo have transformed our understanding of compact-object binaries. In the years to come, ground-based gravitational-wav…

gr-qc2021

Dynamical Formation of Scalarized Black Holes and Neutron Stars through Stellar Core Collapse

Hao-Jui Kuan, Daniela D. Doneva, Stoytcho S. Yazadjiev

In a certain class of scalar-Gauss-Bonnet gravity, the black holes and the neutron stars can undergo spontaneous scalarization -- a strong gravity phase transition triggered by a t…

gr-qc2021★ 44 cited

Spontaneously scalarized black holes in dynamical Chern-Simons gravity: dynamics and equilibrium solutions

Daniela D. Doneva, Stoytcho S. Yazadjiev

In the present paper, we construct spontaneously scalarized rotating black hole solutions in dynamical Chern-Simons (dCS) gravity by following the scalar field evolution in the dec…

gr-qc2021

Oscillation dynamics of scalarized neutron stars

Christian J. Krüger, Daniela D. Doneva

Scalar-tensor theories are well studied extensions of general relativity that offer deviations which are yet within observational boundaries. We present the time evolution equation…