collaborators

6 papers

quant-ph2026

Efficient Compilation for Hamiltonian Simulation via Global Binary Symplectic Form Simplification

Zhaohui Yang, Yuwei Han, Ruiyun Zhang +4

Hamiltonian simulation is a core quantum workload, underpinning variational quantum algorithms and Trotterized time evolution. Such programs are expressed as Pauli exponential sequ…

quant-ph2026

Unifying Qubit Routing Across Diverse Quantum ISAs via Canonical Representation

Zhaohui Yang, Kai Zhang, Xinyang Tian +6

Qubit mapping/routing is a critical stage in compilation for both near-term and fault-tolerant quantum computers, yet existing scalable methods typically impose several times the r…

quant-ph2026

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-ph2025

One Gate Scheme to Rule Them All: Introducing a Complex Yet Reduced Instruction Set for Quantum Computing

Jianxin Chen, Dawei Ding, Weiyuan Gong +2

The design and architecture of a quantum instruction set are paramount to the performance of a quantum computer. This work introduces a gate scheme for qubits with coupling…

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…

quant-ph2025

Efficient Implementation of Arbitrary Two-Qubit Gates via Unified Control

Zhen Chen, Weiyang Liu, Yanjun Ma +16

The native gate set is fundamental to the performance of quantum devices, as it governs the accuracy of basic quantum operations and dictates the complexity of implementing quantum…