CORDIS Project
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This project focuses on advancing numerical relativity methods to better understand black-hole mergers and gravitational waves. It aims to create comprehensive models that incorporate complex phenomena like orbital precession, enhancing the extraction of physical information from gravitational wave observations.
Breakthroughs in numerical relativity in 2005 gave us unprecedented access to the strong-field regime of general relativity, making possible solutions of the full nonlinear Einstein equations for the merger of two black holes.
Numerical relativity is also crucial to study fundamental physics with gravitational-wave (GW) observations: numerical solutions allow us to construct models that will be essential to extract physical information from observations in data from Advanced LIGO and Virgo, whic…
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