2016
DOI: 10.1038/srep32605
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Sensitive determination of the spin polarization of optically pumped alkali-metal atoms using near-resonant light

Abstract: A new method to measure the spin polarization of optically pumped alkali-metal atoms is demonstrated. Unlike the conventional method using far-detuned probe light, the near-resonant light with two specific frequencies was chosen. Because the Faraday rotation angle of this approach can be two orders of magnitude greater than that with the conventional method, this approach is more sensitive to the spin polarization. Based on the results of the experimental scheme, the spin polarization measurements are found to… Show more

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Cited by 23 publications
(14 citation statements)
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References 27 publications
(40 reference statements)
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“…4). Different estimates for the polarization, dependent on the experimental conditions such as laser power, temperature, and xenon number density, exist in the literature, ranging from 10%-80% [67] to 10%-60% [68]. The former values are based on numerical simulations, and the latter are measured ones.…”
Section: B Electronic Spinmentioning
confidence: 99%
“…4). Different estimates for the polarization, dependent on the experimental conditions such as laser power, temperature, and xenon number density, exist in the literature, ranging from 10%-80% [67] to 10%-60% [68]. The former values are based on numerical simulations, and the latter are measured ones.…”
Section: B Electronic Spinmentioning
confidence: 99%
“…The difference values between the relative transition strengths and are given in Table 1 10 . is the probability of the 87 Rb atom being in the ground sublevel .…”
Section: Methodsmentioning
confidence: 99%
“…Ref. 10 brings forth a new method to measure the spin polarization. Instead of far-detuned probe light, the near-resonant probe light with two specific frequencies is chosen.…”
mentioning
confidence: 99%
“…For the magnetometers utilizing alkali metals, the ultra-week magnetic field led to the spin-exchange collision when the optical pump near D1 lines is aligned along the z-axis. Generally, the probe beam with linear polarization is orthogonal to the pump beam as illustrated in figure 1 [15]. The dynamics of electron spins in the ground state can be described by the Bloch equation ignoring the diffusion constant [16]:…”
Section: Spin Polarization Of Alkali Metals and Initial Solution To T...mentioning
confidence: 99%