John A. Paulson School of Engineering and Applied Sciences, Harvard University, Cambridge, MA, 02138, USA.
Department of Electronic Engineering & State Key Laboratory of Terahertz and Millimeter Waves, City University of Hong Kong, Kowloon, Hong Kong, China.
Nat Commun. 2019 Feb 28;10(1):978. doi: 10.1038/s41467-019-08969-6.
Microresonator Kerr frequency combs could provide miniaturised solutions for a wide range of applications. Many of these applications however require further manipulation of the generated frequency comb signal using photonic elements with strong second-order nonlinearity (χ). To date these functionalities have largely been implemented as discrete components due to material limitations, which comes at the expense of extra system complexity and increased optical losses. Here we demonstrate the generation, filtering and electro-optic modulation of a frequency comb on a single monolithic integrated chip, using a nanophotonic lithium-niobate platform that simultaneously possesses large electro-optic (χ) and Kerr (χ) nonlinearities, and low optical losses. We generate broadband Kerr frequency combs using a dispersion-engineered high-Q lithium-niobate microresonator, select a single comb line using an electrically programmable add-drop filter, and modulate the intensity of the selected line. Our results pave the way towards monolithic integrated frequency comb solutions for spectroscopy, data communication, ranging and quantum photonics.
微谐振器克尔频率梳可为广泛的应用提供小型化解决方案。然而,其中许多应用需要使用具有强二阶非线性(χ)的光子元件对生成的频率梳信号进行进一步的处理。迄今为止,由于材料限制,这些功能主要以离散组件的形式实现,这增加了系统的复杂性并增加了光损耗。在这里,我们使用同时具有大电光(χ)和克尔(χ)非线性以及低光损耗的纳米光子铌酸锂平台,在单个单片集成芯片上演示了频率梳的产生、滤波和电光调制。我们使用经过色散设计的高 Q 值铌酸锂微谐振器生成宽带克尔频率梳,使用电可编程的上下滤波器选择单个梳状线,并调制所选线的强度。我们的结果为用于光谱学、数据通信、测距和量子光子学的单片集成频率梳解决方案铺平了道路。