8 papers
Transpiler Autotuning with Predictive Models for Quantum Circuit Optimization
Piotr Malkowski, Domenik Eichhorn, Joshua Ammermann +4
Quantum software engineering is an emerging research field focusing on efficiently embedding the quantum programming paradigm into existing software ecosystems. A key aspect of thi…
Practical HPCQC Integration with QDMI: A Real-Hardware Case Study with IQM Systems
Lukas Burgholzer, Marcel Walter, Patrick Hopf +7
Quantum computers are moving into HPC centers, and the main challenge is now integration rather than pure hardware access. Many current software paths still depend on vendor-specif…
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…
The Munich Quantum Software Stack: Connecting End Users, Integrating Diverse Quantum Technologies, Accelerating HPC
Lukas Burgholzer, Jorge Echavarria, Patrick Hopf +11
Quantum computing is advancing rapidly in hardware and algorithms, but broad accessibility demands a comprehensive, efficient, unified software stack. Such a stack must flexibly sp…
Integrating Quantum Software Tools with(in) MLIR
Patrick Hopf, Erick Ochoa Lopez, Yannick Stade +6
Compilers transform code into action. They convert high-level programs into executable hardware instructions - a crucial step in enabling reliable and scalable quantum computation.…