most citedDemonstration of Discrete-Time Quantum Walks and Observation of Topological Edge States in a Superconducting Qutrit Chain

3 citations · 5 across the 3 of their papers we have counts for

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quant-ph20263 cited

Demonstration of Discrete-Time Quantum Walks and Observation of Topological Edge States in a Superconducting Qutrit Chain

Kun Zhou, Jian-Wen Xu, Qi-Ping Su +12

Quantum walk serves as a versatile tool for universal quantum computing and algorithmic research. However, the implementation of discrete-time quantum walks (DTQWs) with supercondu…

quant-ph2025

Information-Scrambling-Enhanced Quantum Sensing Beyond the Standard Quantum Limit

Yangyang Ge, Haoyu Zhou, Wen Zheng +16

Quantum sensing promises measurement precision beyond classical limits, but its practical realization is often hindered by decoherence and the challenges of generating and stabiliz…

quant-ph20252 cited

Parametric phase modulation in superconducting circuits

Zhuang Ma, Xianke Li, Hongyi Shi +4

Parametric modulation, valued for its versatility, is widely employed in superconducting circuits for quantum simulations and high-fidelity two-qubit gates. Conventionally, the qub…

quant-ph2025

Analysis of Frequency Collisions in Parametrically Modulated Superconducting Circuits

Zhuang Ma, Peng Zhao, Xinsheng Tan +1

Superconducting circuits are a leading platform for scalable quantum computing, where parametric modulation is a widely used technique for implementing high-fidelity multi-qubit op…

quant-ph20253 cited

Broadband merged-element Josephson parametric amplifier

Yuting Sun, Xianke Li, Qingyu Wang +5

Broadband quantum-limited amplifiers are essential for quantum information processing, yet challenges in design and fabrication continue to hinder their widespread applications. He…

quant-ph2025

Tunable Hybrid-Mode Coupler Enabling Strong Interactions between Transmons at Centimeter-Scale Distance

Jianwen Xu, Xiang Deng, Wen Zheng +12

The transmon, a fabrication-friendly superconducting qubit, remains a leading candidate for scalable quantum computing. Recent advances in tunable couplers have accelerated progres…