21 citations · 49 across the 14 of their papers we have counts for
6 papers · 1 filter
Profiling quantum circuits for their efficient execution on single- and multi-core architectures
Medina Bandic, Pablo le Henaff, Anabel Ovide +8
Application-specific quantum computers offer the most efficient means to tackle problems intractable by classical computers. Realizing these architectures necessitates a deep under…
Spatio-Temporal Characterization of Qubit Routing in Connectivity-Constrained Quantum Processors
Sahar Ben Rached, Carmen G. Almudever, Eduard Alarcon +1
Designing efficient quantum processor topologies is pivotal for advancing scalable quantum computing architectures. The communication overhead, a critical factor affecting the exec…
Hungarian Qubit Assignment for Optimized Mapping of Quantum Circuits on Multi-Core Architectures
Pau Escofet, Anabel Ovide, Carmen G. Almudever +2
Modular quantum computing architectures offer a promising alternative to monolithic designs for overcoming the scaling limitations of current quantum computers. To achieve scalabil…
Interconnect Fabrics for Multi-Core Quantum Processors: A Context Analysis
Pau Escofet, Sahar Ben Rached, Santiago Rodrigo +3
Quantum computing has revolutionized the field of computer science with its extraordinary ability to handle classically intractable problems. To realize its potential, however, qua…
Scalable multi-chip quantum architectures enabled by cryogenic hybrid wireless/quantum-coherent network-in-package
Eduard Alarcón, Sergi Abadal, Fabio Sebastiano +9
The grand challenge of scaling up quantum computers requires a full-stack architectural standpoint. In this position paper, we will present the vision of a new generation of scalab…
Mapping quantum algorithms to multi-core quantum computing architectures
Anabel Ovide, Santiago Rodrigo, Medina Bandic +5
Current monolithic quantum computer architectures have limited scalability. One promising approach for scaling them up is to use a modular or multi-core architecture, in which diff…