
From fundamental interactions to emergent complexity
Exploring how quarks and gluons, fundamental constituents of matter, interact and evolve under extreme conditions.”
Research Topics
I study how fundamental matter forms, interacts, and evolves under extreme conditions. My work combines theory and phenomenology to understand the collective -emergent- behaviours of matter, focusing mainly on strongly interacting matter.
Heavy Ion Collisions
I investigate the quark–gluon plasma forms and evolves in in high-energy heavy-ion collisions at CERN, connecting theoretical modeling with experimentally measured quantities.
High Energy QCD
I study the high-energy limit of Quantum Chromodynamics, focusing on gluon saturation, small-x evolution, and the initial conditions that shape the early stages of nuclear collisions.
Quantum Field Theory
I employ quantum field theory to investigate the real-time dynamics of non-equilibrium quantum systems and the microscopic processes driving their approach to thermal equilibrium
Recent Publications
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