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有源中红外环形谐振器。

Active mid-infrared ring resonators.

作者信息

Kazakov Dmitry, Letsou Theodore P, Beiser Maximilian, Zhi Yiyang, Opačak Nikola, Piccardo Marco, Schwarz Benedikt, Capasso Federico

机构信息

Harvard John A. Paulson School of Engineering and Applied Sciences, Harvard University, Cambridge, MA, 02138, USA.

Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, Cambridge, MA, 02142, USA.

出版信息

Nat Commun. 2024 Jan 19;15(1):607. doi: 10.1038/s41467-023-44628-7.

Abstract

High-quality optical ring resonators can confine light in a small volume and store it for millions of roundtrips. They have enabled the dramatic size reduction from laboratory scale to chip level of optical filters, modulators, frequency converters, and frequency comb generators in the visible and the near-infrared. The mid-infrared spectral region (3-12 μm), as important as it is for molecular gas sensing and spectroscopy, lags behind in development of integrated photonic components. Here we demonstrate the integration of mid-infrared ring resonators and directional couplers, incorporating a quantum cascade active region in the waveguide core. It enables electrical control of the resonant frequency, its quality factor, the coupling regime and the coupling coefficient. We show that one device, depending on its operating point, can act as a tunable filter, a nonlinear frequency converter, or a frequency comb generator. These concepts extend to the integration of multiple active resonators and waveguides in arbitrary configurations, thus allowing the implementation of purpose-specific mid-infrared active photonic integrated circuits for spectroscopy, communication, and microwave generation.

摘要

高质量的光学环形谐振器能够将光限制在小体积内并存储数百万次往返。它们使得光学滤波器、调制器、频率转换器以及可见光和近红外频率梳发生器从实验室规模大幅缩小到芯片级别。中红外光谱区域(3 - 12μm),尽管对分子气体传感和光谱学很重要,但在集成光子器件的发展方面却落后了。在此,我们展示了中红外环形谐振器和定向耦合器的集成,在波导芯中纳入了量子级联有源区。这实现了对谐振频率、品质因数、耦合方式和耦合系数的电控制。我们表明,一个器件根据其工作点可充当可调谐滤波器、非线性频率转换器或频率梳发生器。这些概念扩展到以任意配置集成多个有源谐振器和波导,从而允许实现用于光谱学、通信和微波产生的特定用途的中红外有源光子集成电路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0171/10799048/58b735f39ee4/41467_2023_44628_Fig1_HTML.jpg

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