collaborators

6 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

Quantum-Enhanced Dark Matter Search Using Cat States

Pan Zheng, Yanyan Cai, Bin Xu +12

Quantum metrology has recently emerged as a powerful approach for dark matter (DM) searches, particularly using nonclassical bosonic states in microwave cavities that are sensitive…

quant-ph2026

Quantum-enhanced metrology with large Fock states

Xiaowei Deng, Sai Li, Zi-Jie Chen +11

Quantum metrology uses non-classical states, such as Fock states with a specific number of photons, to achieve an advantage over classical sensing methods. Typically, quantum metro…

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…

quant-ph2025

Autonomous quantum error correction beyond break-even and its metrological application

Zhongchu Ni, Ling Hu, Yanyan Cai +8

The ability to extend the lifetime of a logical qubit beyond that of the best physical qubit available within the same system, i.e., the break-even point, is a prerequisite for bui…

quant-ph2025

Quantum squeezing amplification with a weak Kerr nonlinear oscillator

Yanyan Cai, Xiaowei Deng, Libo Zhang +8

Quantum squeezed states, with reduced quantum noise, have been widely utilized in quantum sensing and quantum error correction applications. However, generating and manipulating th…