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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Design and control of femtosecond lasers for optical clocks and the synthesis of low-noise optical and microwave signals
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Design and control of femtosecond lasers for optical clocks and the synthesis of low-noise optical and microwave signals

机译:飞秒激光激光器的设计和控制以及低噪声光学和微波信号的合成

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摘要

This paper describes recent advances in the design and control of femtosecond laser combs for their use in optical clocks and in the synthesis of low-noise microwave and optical signals. The authors present a compact and technically simple femtosecond laser that directly emits a broad continuum and shows that it can operate continuously on the timescale of days as the phase-coherent "clockwork" of an optical clock. They further demonstrate phase locking of an octave-spanning frequency comb to an optical frequency standard at the millihertz level. As verified through heterodyne measurements with an independent optical frequency standard, this provides a network of narrow optical modes with linewidths at the level of ≤150 Hz, presently limited by measurement noise. Finally, they summarize their progress in using the femtosecond laser comb to transfer the stability and low phase-noise optical oscillators to the microwave domain.
机译:本文介绍了飞秒激光梳的设计和控制方面的最新进展,这些飞梳用于光学时钟以及低噪声微波和光学信号的合成。作者提出了一种紧凑且技术上简单的飞秒激光器,它可以直接发出宽广的连续光,并表明它可以在几天的时间范围内连续运行,作为光钟的相位相干“发条”。他们还演示了倍频跨度频率梳的锁相到兆赫兹级的光学频率标准。正如通过使用独立的光学频率标准进行外差测量所证实的那样,这提供了一种窄光学模式的网络,其线宽在≤150Hz的水平上,目前受测量噪声的限制。最后,他们总结了在使用飞秒激光梳将稳定性和低相位噪声光学振荡器转移到微波领域方面的进展。

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