collaborators

10 papers

quant-ph2026

Overcoming the Speed-Fidelity Trade-off in Fast CZ Gates via Cyclic Control

Ze-An Zhao, Hai-Feng Zhang, Tian-Le Wang +10

High-fidelity quantum gates are essential for scalable quantum computation. However, at short durations, short-timescale waveform distortions break the time-reflection symmetry of…

quant-ph2026

Single-Step Phase-Engineered Pulse for Active Readout Cavity Reset in Superconducting Circuits

Ren-Ze Zhao, Ze-An Zhao, Tian-Le Wang +9

In a circuit QED architecture, we experimentally demonstrate a hardware-efficient and qubit-state-dependent Single-Step Phase-Engineered (SSPE) pulse scheme for actively depopulati…

quant-ph2026

Experimental robustness benchmarking of quantum neural networks on a superconducting quantum processor

Hai-Feng Zhang, Zhao-Yun Chen, Peng Wang +17

Quantum machine learning (QML) models, like their classical counterparts, are vulnerable to adversarial attacks, hindering their secure deployment. Here, we report the first system…

quant-ph2025

Inverse designed Hamiltonians for perfect state transfer and remote entanglement generation, and applications in superconducting qubits

Tian-Le Wang, Ze-An Zhao, Peng Wang +9

Hamiltonian inverse engineering enables the design of protocols for specific quantum evolutions or target state preparation. Perfect state transfer (PST) and remote entanglement ge…

quant-ph2025

Quantum State Preparation by Improved MPS Method

Chao Wang, Pengrui Zhou, Xi-Ning Zhuang +4

Efficient encoding of classical information plays a fundamental role in numerous practical quantum algorithms. However, the preparation of an arbitrary amplitude-encoded state has…

cond-mat.mes-hall2025

Electrically-tunable graphene nanomechanical resonators

Yi-Bo Wang, Zhuo-Zhi Zhang, Chen-Xu Wu +4

The excellent mechanical properties make graphene promising for realizing nanomechanical resonators with high resonant frequencies, large quality factors, strong nonlinearities, an…