超连续谱
光子学
频率梳
光电子学
炸薯条
光学
激光器
包层(金属加工)
物理
材料科学
光纤
计算机科学
光子晶体光纤
电信
冶金
作者
Alexander L. Gaeta,Michal Lipson,Tobias J. Kippenberg
出处
期刊:Nature Photonics
[Springer Nature]
日期:2019-02-21
卷期号:13 (3): 158-169
被引量:870
标识
DOI:10.1038/s41566-019-0358-x
摘要
Recent developments in chip-based nonlinear photonics offer the tantalizing prospect of realizing many applications that can use optical frequency comb devices that have form factors smaller than 1 cm3 and that require less than 1 W of power. A key feature that enables such technology is the tight confinement of light due to the high refractive index contrast between the core and the cladding. This simultaneously produces high optical nonlinearities and allows for dispersion engineering to realize and phase match parametric nonlinear processes with laser-pointer powers across large spectral bandwidths. In this Review, we summarize the developments, applications and underlying physics of optical frequency comb generation in photonic-chip waveguides via supercontinuum generation and in microresonators via Kerr-comb generation that enable comb technology from the near-ultraviolet to the mid-infrared regime. This Review discusses the developments and applications of on-chip optical frequency comb generation based on two concepts—supercontinuum generation in photonic-chip waveguides and Kerr-comb generation in microresonators.
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