7 papers
MLIR for Quantum Beyond Gate Cancellation: Quantum Circuit Mapping Reimagined
Matthias Reumann, Yannick Stade, Robert Wille +1
The Multi-Level Intermediate Representation (MLIR) framework has become a cornerstone for building extensible, domain-specific compilers, with the quantum computing community alrea…
Quantum-HPC Software Stacks and the openQSE Reference Architecture: A Survey
Amir Shehata, Brian Austin, Tom Beck +22
Quantum resources are increasingly integrated into high-performance computing (HPC) and cloud environments, but quantum high-performance computing (QHPC) software stacks remain iso…
Automatic De-Quantization of Quantum Programs Using Constant Propagation
Lian Remme, Alexander Weinert, Andre Waschk +2
Quantum computing promises to solve problems beyond the reach of classical computers, but today's quantum hardware is error-prone and much slower than classical hardware. Every qua…
The MQT Compiler Collection: A Blueprint for a Future-Proof Quantum-Classical Compilation Framework
Lukas Burgholzer, Daniel Haag, Yannick Stade +3
As the capabilities of quantum computing hardware continue to rise, algorithms that exploit them are becoming increasingly complex. These developments increase the need for sophist…
Standardizing Access to Heterogeneous Quantum Backends: A Case Study on Cloud Service Integration with QDMI
Patrick Hopf, Sebastian Stern, Robert Wille +1
With an increasingly diverse portfolio of quantum backends, the adoption of standardized interfaces has become a key prerequisite for scalable access and interoperability within qu…
Search Smarter, Not Harder: A Scalable, High-Quality Zoned Neutral Atom Compiler
Yannick Stade, Lukas Burgholzer, Robert Wille
Zoned neutral atom architectures are emerging as a promising platform for large-scale quantum computing. Their growing scale, however, creates a critical need for efficient and aut…