I began my research in High Energy Physics, exploring the matter-antimatter asymmetry through leptogenesis. By investigating sterile neutrinos within non-standard cosmologies, I developed a strong foundation in early universe physics.

Recognizing that sterile neutrinos can act as mediators for Non-Standard Interactions, I transitioned to studying their effects in neutrino-nucleus scattering. The complexities of these nuclear interactions naturally motivated my current focus on Hadron Physics.

Currently, my Ph.D. research at COMPASS and AMBER centers on precision hadron structure measurements, continuing my pursuit of Beyond Standard Model physics. My work targets the Dark Matter sector through a dual approach: investigating the production of BSM candidates, such as Axion-Like Particles and Z’ bosons, and providing critical foundational data for indirect searches. By measuring antiproton production in proton-nucleus collisions, we contribute the vital cross section data required to accurately interpret the cosmic ray antiproton fluxes observed by the AMS experiment.

Research Topics