Magnetic Sensitivity Beyond the Projection Noise Limit by Spin Squeezing 论文

2012Physical Review Letters引用 325
Atomic and Subatomic Physics ResearchQuantum optics and atomic interactionsQuantum Information and Cryptography

详细信息

发表期刊/会议
Physical Review Letters
发表日期
2012-12-19
发表年份
2012

关键词

Atomic and Subatomic Physics ResearchQuantum optics and atomic interactionsQuantum Information and Cryptography

摘要

We report the generation of spin squeezing and entanglement in a magnetically sensitive atomic ensemble, and entanglement-enhanced field measurements with this system. A maximal m(f) = ± 1 Raman coherence is prepared in an ensemble of 8.5 × 10(5) laser-cooled (87)Rb atoms in the f = 1 hyperfine ground state, and the collective spin is squeezed by synthesized optical quantum nondemolition measurement. This prepares a state with large spin alignment and noise below the projection-noise level in a mixed alignment-orientation variable. 3.2 dB of noise reduction is observed and 2.0 dB of squeezing by the Wineland criterion, implying both entanglement and metrological advantage. Enhanced sensitivity is demonstrated in field measurements using alignment-to-orientation conversion.

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