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20182025
most citedProbing beyond-Kerr spacetimes with inspiral-ringdown corrections to gravitational waves

36 citations · 64 across the 4 of their papers we have counts for

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13 papers · 1 filter

gr-qc2025

A tapestry of gravitational waveforms to study black hole mergers

Zack Carson

A novel approach to binary black hole gravitational wave analysis improves the process of inferring black hole properties by selecting the most accurate waveform model for each reg…

gr-qc2023

Regularizing Parameterized Black Hole Spacetimes with Kerr Symmetries

Kent Yagi, Samantha Lomuscio, Tristen Lowrey +1

Parameterized Kerr spacetimes allow us to test the nature of black holes in model-independent ways. Such spacetimes contain several arbitrary functions and, as a matter of practica…

gr-qc2020

Probing Fundamental Physics with Gravitational Waves

Zack Carson

The explosive coalescence of two black holes 1.3 billion light years away has for the very first time allowed us to peer into the extreme gravity region of spacetime surrounding th…

gr-qc2020★ 36 cited

Probing beyond-Kerr spacetimes with inspiral-ringdown corrections to gravitational waves

Zack Carson, Kent Yagi

Gravitational waves from the explosive merger of distant black holes are encoded with details regarding the complex extreme-gravity spacetime present at their source. Famously desc…

gr-qc2020

Probing Einstein-dilaton Gauss-Bonnet Gravity with the inspiral and ringdown of gravitational waves

Zack Carson, Kent Yagi

Gravitational waves from extreme gravity events such as the coalescence of two black holes in a binary system fill our observable universe, bearing with them the underlying theory…

gr-qc2020

Probing string-inspired gravity with the inspiral-merger-ringdown consistency tests of gravitational waves

Zack Carson, Kent Yagi

The extreme-gravity collisions between black holes allow us to probe the underlying theory of gravity. We apply the theory-agnostic inspiral-merger-ringdown consistency test to an…