Area of research
Electrical and Electronic Engineering · Aerospace Engineering
Research interest
Research focused on Plasma and Conceptual design, with related work in Brightness, Linear particle accelerator, Laser. Notable publications include 'EuPRAXIA Conceptual Design Report', 'Free-electron lasing with compact beam-driven plasma wakefield accelerator', and 'EuPRAXIA@SPARC_LAB Design study towards a compact FEL facility at LNF'.
Guiding of Charged Particle Beams in Curved Plasma-Discharge Capillaries
Recovery of hydrogen plasma at the sub-nanosecond timescale in a plasma-wakefield accelerator
Acceleration and focusing of relativistic electron beams in a compact plasma device
Free-electron lasing with compact beam-driven plasma wakefield accelerator
Stable Operation of a Free-Electron Laser Driven by a Plasma Accelerator
EuPRAXIA Conceptual Design Report
Longitudinal Phase-Space Manipulation with Beam-Driven Plasma Wakefields
Temperature analysis in the shock waves regime for gas-filled plasma capillaries in plasma-based accelerators
Status of the Horizon 2020 EuPRAXIA conceptual design study*
EuPRAXIA – a compact, cost-efficient particle and radiation source
EuPRAXIA@SPARC_LAB Design study towards a compact FEL facility at LNF
Focusing of High-Brightness Electron Beams with Active-Plasma Lenses
Overview of plasma lens experiments and recent results at SPARC_LAB
Frontiers of beam diagnostics in plasma accelerators: Measuring the ultra-fast and ultra-cold
Recent results at SPARC_LAB
Status of Plasma-Based Experiments at the SPARC_LAB Test Facility
Horizon 2020 EuPRAXIA design study
Experimental characterization of active plasma lensing for electron beams
Experimental characterization of the effects induced by passive plasma lens on high brightness electron bunches
HORIZON 2020 EuPRAXIA Design Study
The SPARC_LAB Thomson source
The SPARC_LAB Thomson Source Commissioning