Miniaturized optical frequency reference for next-generation portable optical clocks.

OPTICS EXPRESS(2020)

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摘要
Optical frequency standards, or lasers stabilized to atomic or molecular transitions, are widely used in length metrology and laser ranging, provide a backbone for optical communications and lie at the heart of next-generation optical atomic clocks. Here we demonstrate a compact, low-power optical frequency reference based on the Doppler-free, two-photon transition in rubidium-87 at 778 nm implemented on a micro-optics breadboard. Our optical reference achieves a fractional frequency instability of 2.9x10(-12)/root tau for averaging times tau less than 10(3) s, has a volume of approximate to 35 cm(3) and operates on approximate to 450 mW of electrical power. The advanced optical integration presented here demonstrates a key step towards the development of compact optical clocks and the broad dissemination of SI-traceable wavelength references. (C) 2020 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
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