collaborators

5 papers

quant-ph2026

High-fidelity controlled-phase gates for distinguishable quantum walkers via extended interactions

Gaia Forghieri, Matteo G. A. Paris

We investigate the implementation of controlled-phase (CP) gates with quantum walks in a dual-rail encoding through the use of interacting particles. While previous proposals have…

quant-ph2026

Engineering entanglement and transport in interacting quantum walks with tailored potentials

Gaia Forghieri, Matteo G. A. Paris

Controlling the interplay between particle propagation and quantum correlation generation is a central challenge in quantum transport. Here, we investigate two distinguishable cont…

quant-ph2026

Link prediction with swarms of chiral quantum walks

Gaia Forghieri, Viacheslav Dubovitskii, Matteo A. C. Rossi +1

Reconstructing protein-protein interaction networks is a central challenge in network medicine, often addressed using link prediction algorithms. Recent studies suggest that quantu…

cond-mat.mes-hall2026

Hole-spin qubits in germanium beyond the single-particle regime

Andrea Secchi, Gaia Forghieri, Paolo Bordone +3

The intense simulation efforts on hole-spin qubits in germanium have so far focused primarily on singly occupied quantum dots. Here, we theoretically investigate three-hole qubits…

cond-mat.mes-hall2025

Giant Rabi frequencies between qubit and excited hole states in silicon quantum dots

E. Fanucchi, G. Forghieri, A. Secchi +2

Holes in Si quantum dots are being investigated for the implementation of electrically addressable spin qubits. In this perspective, the attention has been focused on the electric-…