5 papers
ARGON: A GNN-Empowered Compilation Framework for Scalable Neutral Atom Computing
Wenjie Sun, Xiaoyu Li, Zhigang Wang +3
Neutral atom quantum systems offer a promising pathway to large-scale quantum computing due to high qubit uniformity and flexible connectivity. To exploit this architecture, compil…
DYNAMO: Dynamic Neutral Atom Multi-programming Optimizer Towards Quantum Operating Systems
Wenjie Sun, Xiaoyu Li, Zhigang Wang +3
As quantum computing advances towards practical applications, quantum operating systems become inevitable, where multi-programming -- the core functionality of operating systems --…
Physics-Aware Compilation for Parallel Quantum Circuit Execution on Neutral Atom Arrays
Geng Chen, Guowu Yang, Wenjie Sun +4
Neutral atom quantum computers are one of the most promising quantum architectures, offering advantages in scalability, dynamic reconfigurability, and potential for large-scale imp…
HAQA: A Hardware-Guided and Fidelity-Aware Strategy for Efficient Qubit Mapping Optimization
Wenjie Sun, Xiaoyu Li, Lianhui Yu +4
Quantum algorithms rely on quantum computers for implementation, but the physical connectivity constraints of modern quantum processors impede the efficient realization of quantum…
MLQM: Machine Learning Approach for Accelerating Optimal Qubit Mapping
Wenjie Sun, Xiaoyu Li, Lianhui Yu +3
Quantum circuit mapping is a critical process in quantum computing that involves adapting logical quantum circuits to adhere to hardware constraints, thereby generating physically…