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- W2096876327 abstract "Coherent population trapping (CPT) resonances usually exhibit contrasts below 10% when interrogated with frequency modulated lasers. We discuss a relatively simple way to increase the resonance contrast to nearly 100% generating an additional light field through a nonlinear four-wave mixing interaction in the atomic vapor.<sup>1</sup> A similar method can also be used to create a beat signal at the CPT resonance frequency that can injection-lock a low-power microwave oscillator at 3.4 GHz directly to the atomic resonance.<sup>2</sup> This could lead to chip-scale atomic clocks (CSACs) with improved performance. Furthermore, we introduce a miniature microfabricated saturated absorption spectrometer<sup>3</sup> that produces a signal for locking a laser frequency to optical transitions in alkali atoms. The Rb absorption spectra are comparable to signals obtained with standard table-top setups, although the rubidium vapor cell has an interior volume of only 1 mm<sup>3</sup> and the volume of the entire spectrometer is around 0.1 cm<sup>3</sup>." @default.
- W2096876327 created "2016-06-24" @default.
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- W2096876327 date "2007-09-13" @default.
- W2096876327 modified "2023-09-24" @default.
- W2096876327 title "Advances in chip-scale atomic frequency references at NIST" @default.
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- W2096876327 doi "https://doi.org/10.1117/12.735024" @default.
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