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用于光学相干断层扫描的基于芯片的频率梳源。

Chip-based frequency comb sources for optical coherence tomography.

作者信息

Ji Xingchen, Yao Xinwen, Klenner Alexander, Gan Yu, Gaeta Alexander L, Hendon Christine P, Lipson Michal

出版信息

Opt Express. 2019 Jul 8;27(14):19896-19905. doi: 10.1364/OE.27.019896.

Abstract

Optical coherence tomography (OCT) is a powerful interferometric imaging technique widely used in medical fields such as ophthalmology, cardiology and dermatology. Superluminescent diodes (SLDs) are widely used as light sources in OCT. Recently integrated chip-based frequency combs have been demonstrated in numerous platforms and the possibility of using these broadband chip-scale combs for OCT has been raised extensively over the past few years. However, the use of these chip-based frequency combs as light sources for OCT requires bandwidth and power compatibility with current OCT systems and have not been shown to date. Here we generate frequency combs based on chip-scale lithographically-defined microresonators and demonstrate its capability as a novel light source for OCT. The combs are designed with a small spectral line spacing of 0.21 nm which ensure imaging range comparable to commercial system and operated at non-phase locked regime which provide conversion efficiency of 30%. The comb source is shown to be compatible with a standard commercial spectral domain (SD) OCT system and enables imaging of human tissue with image quality comparable to the one achieved with tabletop commercial sources. The comb source also provides a path towards fully integrated OCT systems.

摘要

光学相干断层扫描(OCT)是一种强大的干涉成像技术,广泛应用于眼科、心脏病学和皮肤病学等医学领域。超发光二极管(SLD)在OCT中被广泛用作光源。近年来,基于集成芯片的频率梳已在众多平台上得到展示,并且在过去几年中,将这些宽带芯片级频率梳用于OCT的可能性已被广泛提及。然而,将这些基于芯片的频率梳用作OCT光源需要与当前OCT系统在带宽和功率上兼容,而迄今为止尚未得到证实。在此,我们基于芯片级光刻定义的微谐振器生成频率梳,并展示其作为OCT新型光源的能力。这些频率梳设计为具有0.21 nm的小谱线间距,这确保了成像范围与商业系统相当,并且在非锁相状态下运行,其转换效率为30%。该频率梳光源被证明与标准商业光谱域(SD)OCT系统兼容,并能够对人体组织进行成像,其图像质量与使用桌面商业光源所获得的图像质量相当。该频率梳光源还为全集成OCT系统提供了一条途径。

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