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Extreme-mass ratio inspirals around a spinning horizonless compact object
Sapienza University of Rome -
Gravitational-wave imprints of non-integrable extreme-mass-ratio inspirals
University of Tübingen -
Detecting scalar field with extreme mass ratio inspirals
SISSA International School for Advanced Studies -
Extreme Mass Ratio Inspirals, scalar fields and LISA
Sapienza University of Rome -
Worldtube excision method for intermediate-mass-ratio inspirals: scalar-field toy model
Max Planck Institute for Gravitational Physics (Albert Einstein Institute) and Institute for Gravitational Physics of the Leibniz Universität Hannover -
Comparison of eccentric numerical relativity simulations to small mass-ratio perturbation theory
Max Planck Institute for Gravitational Physics (Albert Einstein Institute) -
Redshift factor from numerical relativity simulations
The University of Texas at Austin -
New spin-orbit and spin-squared post-Newtonian results from first-order self-force
Perimeter Institute for Theoretical Physics -
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Extended-body effects in general relativity: What is possible?
University of Chicago -