Time and Frequency Division, National Institute of Standards and Technology, Boulder, CO, USA.
Department of Physics, University of Colorado, Boulder, CO, USA.
Science. 2020 Jul 17;369(6501). doi: 10.1126/science.aay3676.
Optical frequency combs were introduced around 20 years ago as a laser technology that could synthesize and count the ultrafast rate of the oscillating cycles of light. Functioning in a manner analogous to a clockwork of gears, the frequency comb phase-coherently upconverts a radio frequency signal by a factor of [Formula: see text] to provide a vast array of evenly spaced optical frequencies, which is the comb for which the device is named. It also divides an optical frequency down to a radio frequency, or translates its phase to any other optical frequency across hundreds of terahertz of bandwidth. We review the historical backdrop against which this powerful tool for coherently uniting the electromagnetic spectrum developed. Advances in frequency comb functionality, physical implementation, and application are also described.
光学频率梳大约在 20 年前被引入,作为一种激光技术,可以合成和计数光的振荡周期的超快速率。它的工作方式类似于齿轮的发条装置,通过[公式:见文本]的因子将射频信号相相干地上转换,提供一系列均匀间隔的光频率,这就是该器件得名的梳状结构。它还可以将光频率下变频到射频,或者将其相位转换到数百太赫兹带宽内的任何其他光频率。我们回顾了这一强大工具的发展背景,该工具用于相干地统一电磁频谱。还描述了频率梳功能、物理实现和应用的进展。