most citedOptimized readout strategies for neutral atom quantum processors

2 citations · 2 across the 7 of their papers we have counts for

collaborators

7 papers

quant-ph2026

Efficient implementation of arbitrary Hermitian-preserving and trace-preserving maps

Weizhou Cai, Zi-Jie Chen, Xuanqiang Zhao +4

Quantum control has been a cornerstone of quantum information science, driving major advances in quantum computing, quantum communication, and quantum sensing. Over the years, it h…

quant-ph2026

Error-detectable Universal Control for High-Gain Bosonic Quantum Error Correction

Weizhou Cai, Zi-Jie Chen, Ming Li +5

Protecting quantum information through quantum error correction (QEC) is a cornerstone of future fault-tolerant quantum computation. However, current QEC-protected logical qubits h…

quant-ph2026

Echoed Random Quantum Metrology

Dong-Sheng Liu, Zi-Jie Chen, Ziyue Hua +8

Quantum metrology typically demands the preparation of exotic quantum probe states, such as entangled or squeezed states, to surpass classical limits. However, the need for careful…

quant-ph20262 cited

Optimized readout strategies for neutral atom quantum processors

Liang Chen, Wen-Yi Zhu, Zi-Jie Chen +5

Neutral atom quantum processors have emerged as a promising platform for scalable quantum information processing, offering high-fidelity operations and exceptional qubit scalabilit…

quant-ph2026

Scalable Generation of Macroscopic Fock States Exceeding 10,000 Photons

Ming Li, Weizhou Cai, Ziyue Hua +7

The scalable preparation of bosonic quantum states with macroscopic excitations poses a fundamental challenge in quantum technologies, limited by control complexity and photon-loss…

quant-ph2025

Extending coherence time beyond break-even point using only drives and dissipation

Lida Sun, Yifang Xu, Yilong Zhou +11

Quantum error correction (QEC) aims to mitigate the loss of quantum information to the environment, which is a critical requirement for practical quantum computing. Existing QEC im…