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基于光子芯片的宽可调谐、低相位噪声微波源。

Widely tunable, low phase noise microwave source based on a photonic chip.

作者信息

Merklein Moritz, Stiller Birgit, Kabakova Irina V, Mutugala Udara S, Vu Khu, Madden Stephen J, Eggleton Benjamin J, Slavík Radan

出版信息

Opt Lett. 2016 Oct 15;41(20):4633-4636. doi: 10.1364/OL.41.004633.

Abstract

Spectrally pure microwave sources are highly desired for several applications, ranging from wireless communication to next generation radar technology and metrology. Additionally, to generate very pure signals at even higher frequencies, these advanced microwave sources have to be compact, low in weight, and low energy consumption to comply with in-field applications. A hybrid optical and electronic cavity, known as an optoelectronic oscillator (OEO), has the potential to leverage the high bandwidth of optics to generate ultrapure high-frequency microwave signals. Here we present a widely tunable, low phase noise microwave source based on a photonic chip. Using on-chip stimulated Brillouin scattering as a narrowband active filter allows single-mode OEO operation and ultrawide frequency tunability with no signal degeneration. Furthermore, we show very low close-to-carrier phase noise. This Letter paves the way to a compact, fully integrated pure microwave source.

摘要

光谱纯微波源在从无线通信到下一代雷达技术和计量学等多种应用中都有很高的需求。此外,为了在更高频率下产生非常纯净的信号,这些先进的微波源必须紧凑、重量轻且能耗低,以符合现场应用的要求。一种混合光学和电子的腔体,即光电子振荡器(OEO),有潜力利用光学的高带宽来产生超纯高频微波信号。在此,我们展示了一种基于光子芯片的宽可调、低相位噪声微波源。利用片上受激布里渊散射作为窄带有源滤波器,可实现单模OEO运行和超宽频率可调性,且无信号退化。此外,我们还展示了极低的载波附近相位噪声。这封信为紧凑、完全集成的纯微波源铺平了道路。

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