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quant-ph2025

Logical multi-qubit entanglement with dual-rail superconducting qubits

Wenhui Huang, Xuandong Sun, Jiawei Zhang +21

Recent advances in quantum error correction (QEC) across hardware platforms have demonstrated operation near and beyond the fault-tolerance threshold, yet achieving exponential sup…

quant-ph2025

Logical operations with a dynamical qubit in Floquet-Bacon-Shor code

Xuandong Sun, Longcheng Li, Zhiyi Wu +29

Quantum error correction (QEC) protects quantum systems against inevitable noises and control inaccuracies, providing a pathway towards fault-tolerant (FT) quantum computation. Sta…

quant-ph2025

Experimental observation of exact quantum critical states

Wenhui Huang, Xin-Chi Zhou, Libo Zhang +29

Anderson localization physics features three fundamental types of eigenstates: extended, localized, and critical, with the third one exhibiting the exotic properties in-between the…

quant-ph2024

A C-Band Cryogenic GaAs MMIC Low-Noise Amplifier for Quantum Applications

Zechen Guo, Daxiong Sun, Peisheng Huang +16

Large-scale superconducting quantum computers require massive numbers of high-performance cryogenic low-noise amplifiers (cryo-LNA) for qubit readout. Here we present a C-Band mono…

quant-ph2024

M2CS: A Microwave Measurement and Control System for Large-scale Superconducting Quantum Processors

Jiawei Zhang, Xuandong Sun, Zechen Guo +17

As superconducting quantum computing continues to advance at an unprecedented pace, there is a compelling demand for the innovation of specialized electronic instruments that act a…