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电池供电集成频率梳状发生器。

Battery-operated integrated frequency comb generator.

机构信息

School of Electrical and Computer Engineering, Cornell University, Ithaca, NY, USA.

Department of Electrical Engineering, Columbia University, New York, NY, USA.

出版信息

Nature. 2018 Oct;562(7727):401-405. doi: 10.1038/s41586-018-0598-9. Epub 2018 Oct 8.

Abstract

Optical frequency combs are broadband sources that offer mutually coherent, equidistant spectral lines with unprecedented precision in frequency and timing for an array of applications. Frequency combs generated in microresonators through the Kerr nonlinearity require a single-frequency pump laser and have the potential to provide highly compact, scalable and power-efficient devices. Here we demonstrate a device-a laser-integrated Kerr frequency comb generator-that fulfils this potential through use of extremely low-loss silicon nitride waveguides that form both the microresonator and an integrated laser cavity. Our device generates low-noise soliton-mode-locked combs with a repetition rate of 194 gigahertz at wavelengths near 1,550 nanometres using only 98 milliwatts of electrical pump power. The dual-cavity configuration that we use combines the laser and microresonator, demonstrating the flexibility afforded by close integration of these components, and together with the ultra low power consumption should enable production of highly portable and robust frequency and timing references, sensors and signal sources. This chip-based integration of microresonators and lasers should also provide tools with which to investigate the dynamics of comb and soliton generation.

摘要

光学频率梳是一种宽带光源,它提供相互相干、等距的光谱线,在频率和时间方面具有前所未有的精度,可用于一系列应用。通过克尔非线性在微谐振器中产生的频率梳需要单频泵浦激光,并且有可能提供高度紧凑、可扩展和高效的设备。在这里,我们展示了一种通过使用极低损耗氮化硅波导形成微谐振器和集成激光腔的设备 - 激光集成克尔频率梳发生器 - 来实现这一潜力。我们的设备仅使用 98 毫瓦的电泵浦功率,在近 1550 纳米波长处产生重复率为 194 吉赫兹的低噪声孤子锁模梳。我们使用的双腔结构将激光和微谐振器结合在一起,展示了这些组件紧密集成所带来的灵活性,并且超低的功耗应该能够实现高度便携和稳定的频率和定时参考、传感器和信号源。这种基于芯片的微谐振器和激光器的集成还应该为研究梳状和孤子产生的动力学提供工具。

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