3 citations · 3 across the 2 of their papers we have counts for
7 papers
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.…
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…
Tackling the Challenges of Adding Pulse-level Support to a Heterogeneous HPCQC Software Stack: MQSS Pulse
Jorge Echavarria, Muhammad Nufail Farooqi, Amit Devra +22
We study the problem of adding native pulse-level control to heterogeneous High Performance Computing-Quantum Computing (HPCQC) software stacks, using the Munich Quantum Software S…
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…
Routing-Aware Placement for Zoned Neutral Atom-based Quantum Computing
Yannick Stade, Wan-Hsuan Lin, Jason Cong +1
Quantum computing promises to solve previously intractable problems, with neutral atoms emerging as a promising technology. Zoned neutral atom architectures allow for immense paral…
Towards Supporting QIR: Steps for Adopting the Quantum Intermediate Representation
Yannick Stade, Lukas Burgholzer, Robert Wille
Intermediate representations (IRs) play a crucial role in the software stack of a quantum computer to facilitate efficient optimizations for executing an application on hardware. O…