9 citations · 34 across the 30 of their papers we have counts for
16 papers · 1 filter
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…
Qubit Reuse Beyond Reorder and Reset: Optimizing Quantum Circuits by Fully Utilizing the Potential of Dynamic Circuits
Damian Rovara, Lukas Burgholzer, Robert Wille
Qubit reuse offers a promising way to reduce the hardware demands of quantum circuits, but current approaches are largely restricted to reordering measurements and applying qubit r…
Exploiting Movable Logical Qubits for Lattice Surgery Compilation
Laura S. Herzog, Lucas Berent, Aleksander Kubica +1
Lattice surgery with two-dimensional quantum error correcting codes is among the leading schemes for fault-tolerant quantum computation, motivated by superconducting hardware archi…
Quantum Hardware-Efficient Selection of Auxiliary Variables for QUBO Formulations
Damian Rovara, Lukas Burgholzer, Robert Wille
The Quantum Approximate Optimization Algorithm (QAOA) requires considered optimization problems to be translated into a compatible format. A popular transformation step in this pip…
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…
Improving Hardware Requirements for Fault-Tolerant Quantum Computing by Optimizing Error Budget Distributions
Tobias Forster, Nils Quetschlich, Mathias Soeken +1
Despite significant progress in quantum computing in recent years, executing quantum circuits for practical problems remains challenging due to error-prone quantum hardware. Hence,…