Simulation of two colliding black holes

This research line focuses on quantum aspects of gravity and cosmology, using semiclassical methods within a broad range of high-energy physics frameworks relevant to quantum gravity. It encompasses the study of quantum effects in the Early Universe, including corrections to inflation and the formation of primordial black holes, as well as possible quantum phenomena in the Late Universe. It also addresses the role of quantum backreaction in gravitational and cosmological systems. Particular attention is devoted to connecting fundamental theory with observation through the study of gravitational wave production and other multi-messenger signatures arising from a wide variety of astrophysical and cosmological sources.

17 people in this line

NamePositionResearch lines
Alonso, AsierAssistant ProfessorGravitation
Alvarez, MikelAssistant ProfessorHigh Energy Physics, Gravitation
Aranguren, EnekoPhD StudentGravitation
Artola, MikelPhD StudentCosmology, Gravitation
Bandos, IgorIkerbasque Research ProfessorHigh Energy Physics, Gravitation
Blanco-Pillado, J.J.Ikerbasque Research ProfessorCosmology, High Energy Physics, Gravitation
Bouhmadi-Lopez, MariamIkerbasque Research Associate ProfessorCosmology, Gravitation
Brizuela, DavidAssociate ProfessorGravitation
Garay, IñakiAssociate ProfessorGravitation
Lazkoz, RuthFull ProfessorCosmology, Gravitation
Lopez, MikelPhD StudentGravitation
Rodriguez, SergioPhD StudentGravitation
Senovilla, Jose M. M.Full ProfessorGravitation
Soler, AraceliPhD StudentGravitation
Sousa, KepaAssistant ProfessorCosmology, High Energy Physics, Gravitation
Uria, Sara F.Assistant ProfessorGravitation
Vera, RaulResearcherGravitation

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