collaborators

9 papers

quant-ph2026

Demonstrating advantages of dynamic quantum circuits on a hybrid superconducting qubit-cavity processor

Hongbo Wu, Ling Hu, Jiasheng Mai +10

Dynamic quantum circuits (DQCs) provide a hardware-efficient route to quantum computing by reducing physical-qubit overhead and compressing circuit topology through mid-circuit mea…

quant-ph2026

Real-time Surface-Code Error Correction Using an FPGA-based Neural-Network Decoder

Xiaohan Yang, Xuandong Sun, Zhiyi Wu +9

Quantum error correction (QEC) is essential for achieving low error rates required for fault-tolerant quantum computation. In stabilizer-based codes such as the surface code, error…

quant-ph2026

Collective Dynamics in Circuit Quantum Acoustodynamics with a Macroscopic Resonator

Libo Zhang, Chilong Liu, Guixu Xie +9

Collective dynamics in engineered quantum systems offer a unique and versatile platform for exploring how many-body correlations bridge microscopic entanglement and macroscopic beh…

quant-ph2026

Quantum Charging Advantage in Superconducting Solid-State Batteries

Chang-Kang Hu, Chilong Liu, Jingchao Zhao +20

Quantum battery, as a novel energy storage device, offers the potential for unprecedented efficiency and performance beyond the capabilities of classical systems, with broad implic…

quant-ph2026

Quantum-Enhanced Sensing Enabled by Scrambling-Induced Genuine Multipartite Entanglement

Guantian Hu, Wenxuan Zhang, Zhihua Chen +16

Quantum sensing leverages quantum resources to surpass the standard quantum limit, yet many existing protocols rely on the preparation of complex entangled states and Hamiltonian e…

quant-ph2026

A biased-erasure cavity qubit with hardware-efficient quantum error detection

Jiasheng Mai, Qiyu Liu, Xiaowei Deng +8

Erasure qubits are beneficial for quantum error correction due to their relaxed threshold requirements. While dual-rail erasure qubits have been demonstrated with a strong error hi…