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20032022
most citedInspiral, merger and ringdown of unequal mass black hole binaries: a multipolar analysis

425 citations · 4.2k across the 51 of their papers we have counts for

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Showing 2019Show all

24 papers · 1 filter

astro-ph.IM2019

Building A Field: The Future of Astronomy with Gravitational Waves, A State of The Profession Consideration for Astro2020

Kelly Holley-Bockelmann, Joey Shapiro Key, Brittany Kamai +28

Harnessing the sheer discovery potential of gravitational wave astronomy will require bold, deliberate, and sustained efforts to train and develop the requisite workforce. The next…

gr-qc2019

Spinning and excited black holes in Einstein-scalar-Gauss-Bonnet theory

Lucas G. Collodel, Burkhard Kleihaus, Jutta Kunz +1

We construct rotating black holes in Einstein-scalar-Gauss-Bonnet theory with a quadratic coupling function. We map the domain of existence of the rotating fundamental solutions, w…

gr-qc20197 cited

Topical Collection: Testing the Kerr spacetime with gravitational-wave and electromagnetic observations

Emanuele Berti

One of the Holy Grails of observational astronomy is to confirm the prediction that black holes in the Universe are described by the Kerr solution of Einstein's field equations of…

gr-qc201981 cited

Parametrized ringdown spin expansion coefficients: a data-analysis framework for black-hole spectroscopy with multiple events

Andrea Maselli, Paolo Pani, Leonardo Gualtieri +1

Black-hole spectroscopy is arguably the most promising tool to test gravity in extreme regimes and to probe the ultimate nature of black holes with unparalleled precision. These te…

gr-qc2019

Post-Newtonian dynamics and black hole thermodynamics in Einstein-scalar-Gauss-Bonnet gravity

Félix-Louis Julié, Emanuele Berti

We study the post-Newtonian dynamics of black hole binaries in Einstein-scalar-Gauss-Bonnet gravity theories. To this aim we build static, spherically symmetric black hole solution…

gr-qc2019

The Missing Link in Gravitational-Wave Astronomy: Discoveries waiting in the decihertz range

Manuel Arca Sedda, Christopher P. L. Berry, Karan Jani +27

The gravitational-wave astronomical revolution began in 2015 with LIGO's observation of the coalescence of two stellar-mass black holes. Over the coming decades, ground-based detec…