微波食品加热
计算机科学
分频器
电子工程
波形
梳状发生器
干涉测量
任意波形发生器
光学
谐振器
带宽(计算)
频率梳
雷达
物理
激光器
电信
功率分配器和定向耦合器
工程类
作者
Tara M. Fortier,Matthew S. Kirchner,Franklyn Quinlan,Jennifer A. Taylor,J. C. Bergquist,T. Rosenband,Nathan D. Lemke,Andrew D. Ludlow,Yan‐Yi Jiang,C. W. Oates,Scott A. Diddams
出处
期刊:Nature Photonics
[Springer Nature]
日期:2011-06-26
卷期号:5 (7): 425-429
被引量:682
标识
DOI:10.1038/nphoton.2011.121
摘要
There has been increased interest in the use and manipulation of optical fields to address challenging problems that have traditionally been approached with microwave electronics. Some examples that benefit from the low transmission loss, agile modulation and large bandwidths accessible with coherent optical systems include signal distribution, arbitrary waveform generation, and novel imaging. We extend these advantages to demonstrate a microwave generator based on a high-Q optical resonator and a frequency comb functioning as an optical-to-microwave divider. This provides a 10 GHz electrical signal with fractional frequency instability <8e-16 at 1 s, a value comparable to that produced by the best microwave oscillators, but without the need for cryogenic temperatures. Such a low-noise source can benefit radar systems, improve the bandwidth and resolution of communications and digital sampling systems, and be valuable for large baseline interferometry, precision spectroscopy and the realization of atomic time.
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