From the 1 of 6 linked papers with an AI index.
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6 papers
Three ways to share a QPU: Scheduling strategies for hybrid Quantum-HPC applications
Marco Cipollini, Simone Rizzo, Sergio Iserte +21
The paper investigates three scheduling approaches—time‑based multiplexing, dynamic resource management, and workflow decomposition—to efficiently allocate quantum processing units…
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…
Assessing the Elephant in the Room in Scheduling for Current Hybrid HPC-QC Clusters
Paolo Viviani, Roberto Rocco, Matteo Barbieri +14
Quantum computing resources are among the most promising candidates for extending the computational capabilities of High-Performance Computing (HPC) systems. As a result, HPC-quant…
Molecular Docking via Weighted Subgraph Isomorphism on Quantum Annealers
Emanuele Triuzzi, Riccardo Mengoni, Francesco Micucci +4
Molecular docking is an essential step in the drug discovery process involving the detection of three-dimensional poses of a ligand inside the active site of the protein. In this p…
A clustering aggregation algorithm on neutral-atoms and annealing quantum processors
Riccardo Scotti, Gabriella Bettonte, Antonio Costantini +3
This work presents a hybrid quantum-classical algorithm to perform clustering aggregation, designed for neutral-atoms quantum computers and quantum annealers. Clustering aggregatio…