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20242026
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quant-ph2026

Pareto Front Engineering of Dynamical Sweet Spots in Superconducting Qubits

Zhen Yang, Shan Jin, Yajie Hao +4

Operating superconducting qubits at dynamical sweet spots (DSSs) suppresses decoherence from low-frequency flux noise. A key open question is how long coherence can be extended und…

quant-ph2025

Robust Control of High-dimensional Quantum Systems against Coherent and Incoherent Errors

Yidian Fan, Re-Bing Wu

Toward scalable quantum computing, the control of quantum systems needs to be robust against both coherent errors induced by parametric uncertainties and incoherent errors induced…

quant-ph2025

Robust Quantum Control using Reinforcement Learning from Demonstration

Shengyong Li, Yidian Fan, Xiang Li +6

Quantum control requires high-precision and robust control pulses to ensure optimal system performance. However, control sequences generated with a system model may suffer from mod…

quant-ph2024

Quantum Optimal Control Theory for the Shaping of Flying Qubits

Xue Dong, Xi Cao, Wen-Long Li +3

The control of flying qubits carried by itinerant photons is ubiquitous in quantum networks. Beside their logical states, the shape of flying qubits must also be tailored for high-…

quant-ph2024

MindSpore Quantum: A User-Friendly, High-Performance, and AI-Compatible Quantum Computing Framework

Xusheng Xu, Jiangyu Cui, Zidong Cui +36

We introduce MindSpore Quantum, a pioneering hybrid quantum-classical framework with a primary focus on the design and implementation of noisy intermediate-scale quantum (NISQ) alg…

quant-ph2024

Trapping polar molecules by surface acoustic waves

Haijin Ding, Re-Bing Wu, Yu-xi Liu

We propose a method to trap polar molecules with the electrical force induced by the surface acoustic wave (SAW) on piezoelectric materials. In this approach, the electrical force…