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

36 citations · 64 across the 2 of their papers we have counts for

collaborators

11 papers

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-qc202036 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…

astro-ph.HE202028 cited

Measuring Nuclear Matter Parameters with NICER and LIGO/Virgo

Josef Zimmerman, Zack Carson, Kristen Schumacher +2

The NICER Collaboration recently reported the measurement of the mass and radius of a pulsar PSR J0030+0451. We here use this new measurement to constrain one of the higher-order n…

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…

gr-qc2019

Parameterized and inspiral-merger-ringdown consistency tests of gravity with multi-band gravitational wave observations

Zack Carson, Kent Yagi

The gravitational wave observations of colliding black holes have opened a new window into the unexplored extreme gravity sector of physics, where the gravitational fields are imme…