6 papers
To Scale Up or To Scale Out: Evaluating Space-Time Costs of Compiled Logical Circuits on Modular Superconducting Quantum Processors
Nikiforos Paraskevopoulos, Sebastian de Bone, Mick Christophersen +4
Modular integration has emerged as the main pathway for scaling superconducting quantum processing units (QPUs) beyond the constraints of fabrication yield and physical footprint.…
From Characterization To Construction: Generative Quantum Circuit Synthesis from Gate Set Tomography Data
King Yiu Yu, Aritra Sarkar, Erbing Hua +3
High-fidelity circuit execution on noisy intermediate-scale quantum devices is bottlenecked by compilation pipelines that disregard complex, correlated noise. To address this, this…
Stacking the Odds: Full-Stack Quantum System Design Space Exploration
Hila Safi, Medina Bandic, Christoph Niedermeier +3
Design space exploration (DSE) plays an important role in optimising quantum circuit execution by systematically evaluating different configurations of compilation strategies and h…
ArtA: Automating Design Space Exploration of Spin Qubit Architectures
Nikiforos Paraskevopoulos, David Hamel, Aritra Sarkar +2
In the fast-paced field of quantum computing, identifying the architectural characteristics that will enable quantum processors to achieve high performance across a diverse range o…
DeQompile: quantum circuit decompilation using genetic programming for explainable quantum architecture search
Shubing Xie, Aritra Sarkar, Sebastian Feld
Demonstrating quantum advantage using conventional quantum algorithms remains challenging on current noisy gate-based quantum computers. Automated quantum circuit synthesis via qua…
Transformer Models for Quantum Gate Set Tomography
King Yiu Yu, Aritra Sarkar, Maximilian Rimbach-Russ +2
Quantum computation represents a promising frontier in the domain of high-performance computing, blending quantum information theory with practical applications to overcome the lim…