most citedQuantum Compiler Design for Qubit Mapping and Routing: A Cross-Architectural Survey of Superconducting, Trapped-Ion, and Neutral Atom Systems

1 citations · 1 across the 4 of their papers we have counts for

collaborators

6 papers

quant-ph2026

Optimal Compilation of Syndrome Extraction Circuits for General Quantum LDPC Codes

Kai Zhang, Dingchao Gao, Zhaohui Yang +4

Quantum error correcting codes (QECC) are essential for constructing large-scale quantum computers that deliver faithful results. As strong competitors to the conventional surface…

quant-ph2026

SurgeQ: A Hybrid Framework for Ultra-Fast Quantum Processor Design and Crosstalk-Aware Circuit Execution

Xinxuan Chen, Hongxiang Zhu, Zhaohui Yang +4

Executing quantum circuits on superconducting platforms requires balancing the trade-off between gate errors and crosstalk. To address this, we introduce SurgeQ, a hardware-softwar…

quant-ph2025

Quantum Design Automation: Foundations, Challenges, and the Road Ahead

Feng Wu, Jingzhe Guo, Tian Xia +12

Quantum computing is transitioning from laboratory research to industrial deployment, yet significant challenges persist: system scalability and performance, fabrication yields, an…

quant-ph2025

Reconfigurable Quantum Instruction Set Computers for High Performance Attainable on Hardware

Zhaohui Yang, Dawei Ding, Qi Ye +3

The performance of current quantum hardware is severely limited. While expanding the quantum ISA with high-fidelity, expressive basis gates is a key path forward, it imposes signif…

quant-ph20251 cited

Quantum Compiler Design for Qubit Mapping and Routing: A Cross-Architectural Survey of Superconducting, Trapped-Ion, and Neutral Atom Systems

Chenghong Zhu, Xian Wu, Zhaohui Yang +4

Quantum hardware development is progressing rapidly with substantial advancements achieved across leading platforms, including superconducting circuits, trapped-ion systems, and ne…

quant-ph2025

PHOENIX: Pauli-Based High-Level Optimization Engine for Instruction Execution on NISQ Devices

Zhaohui Yang, Dawei Ding, Chenghong Zhu +2

Variational quantum algorithms (VQA) based on Hamiltonian simulation represent a specialized class of quantum programs well-suited for near-term quantum computing applications due…