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quant-ph2026

Fast Nondestructive Readout for High-Clock-Rate Atom Array Quantum Processor

Xu-Zhao-Qiu Zeng, Chang You, Qing-Wei Wang +18

Neutral-atom arrays have rapidly advanced to support thousands of qubits and execute high-fidelity logical operations. However, these processors remain severely throttled by their…

quant-ph2026

Squeezed-slit Bohr-Einstein Interferometer

Hao-Wen Cheng, Xu-Zhao-Qiu Zeng, Yu-Chen Zhang +9

The Einstein-Bohr recoiling-slit gedankenexperiment, a cornerstone of quantum complementarity, has long been constrained by the zero-point fluctuations of the atomic slit -- the sp…

quant-ph2026

Sustaining high-fidelity quantum logic in neutral-atom circuits via mid-circuit operations

Rui Lin, You Li, Le-Tian Zheng +11

The realization of fault-tolerant quantum computation hinges on the ability to execute deep quantum circuits while maintaining gate fidelities consistently above error-correction t…

quant-ph2024

AI-Enabled Rapid Assembly of Thousands of Defect-Free Neutral Atom Arrays with Constant-time-overhead

Rui Lin, Han-Sen Zhong, You Li +15

Assembling increasingly larger-scale defect-free optical tweezer-trapped atom arrays is essential for quantum computation and quantum simulations based on atoms. Here, we propose a…

quant-ph2024

Tunable Einstein-Bohr recoiling-slit gedankenexperiment at the quantum limit

Yu-Chen Zhang, Hao-Wen Cheng, Zhao-Qiu Zengxu +7

In 1927, during the fifth Solvay Conference, Einstein and Bohr described a double-slit interferometer with a "movable slit" that can detect the momentum recoil of one photon. Here,…