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20192026
most citedOptimization of CNOT circuits on limited connectivity architecture

19 citations · 31 across the 5 of their papers we have counts for

collaborators

5 papers

quant-ph2026

From Leaves to Clusters: Depth-Efficient SAT-Oracle Synthesis Based on the HRSE Model

Zhihang Li, Wei Zi, Shuai Yang +7

Quantum oracles are a common building block of many quantum algorithms, where circuit depth is a primary cost that directly affects overall performance. Synthesizing oracles for SA…

quant-ph2025

Quantum circuit synthesis with qudit phase gadget method

Shuai Yang, Lihao Xu, Guojing Tian +1

Current quantum devices have unutilized high-level quantum resources. More and more attention has been paid to the qudit quantum systems with larger than two dimensions to maximize…

quant-ph2021★ 11 cited

Asymptotically Optimal Circuit Depth for Quantum State Preparation and General Unitary Synthesis

Xiaoming Sun, Guojing Tian, Shuai Yang +2

The Quantum State Preparation problem aims to prepare an -qubit quantum state from the initial state , for a…

quant-ph2021★ 1 cited

Efficient quantum circuit synthesis for SAT-oracle with limited ancillary qubit

Shuai Yang, Wei Zi, Bujiao Wu +3

How to implement quantum oracle with limited resources raises concerns these days. We design two ancilla-adjustable and efficient algorithms to synthesize SAT-oracle, the key compo…

quant-ph2019★ 19 cited

Optimization of CNOT circuits on limited connectivity architecture

Bujiao Wu, Xiaoyu He, Shuai Yang +4

A CNOT circuit is the key gadget for entangling qubits in quantum computing systems. However, the qubit connectivity of noisy intermediate-scale quantum (NISQ) devices is constrain…