Particle tracks spiralling in a bubble chamber

The exploration of fundamental interactions at the smallest scales constitutes a central pillar of modern physics. This research line encompasses theoretical and experimental studies in particle physics and high-energy physics, including quantum chromodynamics, neutrino physics, and collider phenomenology. It also addresses advanced frameworks such as supergravity and string theory, aimed at providing a unified description of fundamental forces. In parallel, novel approaches integrating quantum computing into high-energy physics are developed to tackle computationally demanding problems and enhance data analysis techniques. Together, these efforts contribute to a deeper understanding of the structure of matter, the origin of mass, and the fundamental laws governing the Universe.

13 people in this line

NamePositionResearch lines
Alvarez, MikelAssistant ProfessorHigh Energy Physics, Gravitation
Bandos, IgorIkerbasque Research ProfessorHigh Energy Physics, Gravitation
Blanco-Pillado, J.J.Ikerbasque Research ProfessorCosmology, High Energy Physics, Gravitation
Bongallino, AlessiaPhD StudentHigh Energy Physics
Echevarría, Miguel G.Associate ProfessorHigh Energy Physics
Esteban, IvanAssistant ProfessorCosmology, High Energy Physics
Felipe, AngelPhD StudentHigh Energy Physics
Mañes, Juan LuisProfessor EmeritusHigh Energy Physics
Materne, JuliusPhD StudentHigh Energy Physics
Romera, Samuel F.PhD StudentHigh Energy Physics
Sadofyev, AndreyIkerbasque Research FellowHigh Energy Physics
Schnell, GunarIkerbasque Research ProfessorHigh Energy Physics
Sousa, KepaAssistant ProfessorCosmology, High Energy Physics, Gravitation

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