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- W3002019998 abstract "We study the spin-noise spectrum (SNS) of unpolarized Rb vapor in an evacuated anti-relaxation-coated cell using parametric Faraday rotation of a flat-top probe beam with variable diameter. We identify a distinct structure in the spectrum, called the Ramsey peak. We find that the power of the Ramsey peak is inversely proportional to the total number of atoms in the cell, and the power of the total spin noise is inversely proportional to the number of atoms within the probe beam. We further present a full theoretical analysis of the SNS by comparing three models of spin diffusion: Fickian diffusion, the ballistic flight, and Langevin's diffusion. We find that Fickian diffusion fails, while the ballistic flight is acceptable. However, Langevin's diffusion yields a remarkable agreement with the experimental spectrum." @default.
- W3002019998 created "2020-01-30" @default.
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- W3002019998 date "2020-01-21" @default.
- W3002019998 modified "2023-10-15" @default.
- W3002019998 title "Spin-noise spectrum of hot vapor atoms in an anti-relaxation-coated cell" @default.
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- W3002019998 doi "https://doi.org/10.1103/physreva.101.013821" @default.
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