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20182026
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quant-ph2026

Quantum sensing of low-frequency electric signal enabled by modulated auxiliary field in Rydberg atoms

Xiayang Fan, Shenchao Jin, Jiatian Liu +3

Rydberg atoms have emerged as a versatile and efficient platform for high-sensitivity quantum sensing of free-space electric fields, with remarkable progress in detecting low-frequ…

quant-ph2025

Cooperative squeezing of internal and collective spins in an atomic ensemble

Youwei Zhang, Shenchao Jin, Junlei Duan +4

Creating highly spin-squeezed states for quantum metrology surpassing the standard quantum limit is a topic of great interest. Spin squeezing has been achieved by either entangling…

quant-ph2023

Concurrent spin squeezing and light squeezing in an atomic ensemble

Shenchao Jin, Junlei Duan, Youwei Zhang +7

Squeezed spin states and squeezed light are both key resources for quantum metrology and quantum information science, but have been separately investigated in experiments so far. S…

quant-ph2020

Retrodiction beyond the Heisenberg uncertainty relation

Han Bao, Shenchao Jin, Junlei Duan +4

In quantum mechanics, the Heisenberg uncertainty relation presents an ultimate limit to the precision by which one can predict the outcome of position and momentum measurements on…

quant-ph2018

Measurements with prediction and retrodiction on the collective spin of 10^{11} atoms beat the standard quantum limit

Han Bao, Junlei Duan, Xingda Lu +10

Quantum probes using uncorrelated particles give a limit on the measurement sensitivity referred to as the standard quantum limit (SQL). The SQL, however, can be overcome by ex…