2 citations · 4 across the 8 of their papers we have counts for
8 papers
Portable Acceleration of Learning With Errors KEMs for Post-Quantum Cryptography
Tiziana Liberati, Nitin Shukla, Simone Rizzo +5
The transition to post-quantum cryptography (PQC) is driving demand for implementations that can meet the computational requirements of real-world applications. Among the proposed…
GPU Acceleration of Learning With Errors KEMs Using OpenACC for Post-Quantum Cryptography
Tiziana Liberati, Nitin Shukla, Matteo Barbieri +5
Shor's algorithm proved that asymmetric cryptographic protocols based on the integer factorization and discrete logarithm problems are no longer safe in a world with large-scale qu…
A Physically-Informed Subgraph Isomorphism Approach to Molecular Docking Using Quantum Annealers
Francesco Micucci, Matteo Barbieri, Gabriella Bettonte +6
Molecular docking is a crucial step in the development of new drugs as it guides the positioning of a small molecule (ligand) within the pocket of a target protein. In the literatu…
Three ways to share a QPU: Scheduling strategies for hybrid Quantum-HPC applications
Marco Cipollini, Simone Rizzo, Sergio Iserte +21
As quantum computing (QC) technologies mature, their integration into established high-performance computing (HPC) infrastructures is becoming a central objective for next-generati…
Practical Use Cases of Neutral Atoms Quantum Computers
Matteo Grotti, Sara Marzella, Gabriella Bettonte +2
Quantum computing has quickly emerged as a revolutionary paradigm that holds the potential for greatly enhanced computational capability and algorithmic efficiency, in a wide range…
Dynamic Solutions for Hybrid Quantum-HPC Resource Allocation
Roberto Rocco, Simone Rizzo, Matteo Barbieri +16
The integration of quantum computers within classical High-Performance Computing (HPC) infrastructures is receiving increasing attention, with the former expected to serve as accel…