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利用光纤中的拓扑增强旋光性进行高分辨率光谱计量学。

High resolution spectral metrology leveraging topologically enhanced optical activity in fibers.

机构信息

Boston University, Boston, MA, 02215, USA.

Aeva Inc, Mountain View, CA, 94043, USA.

出版信息

Nat Commun. 2020 Oct 16;11(1):5257. doi: 10.1038/s41467-020-18931-6.

Abstract

Optical rotation, a form of optical activity, is a phenomenon employed in various metrological applications and industries including chemical, food, and pharmaceutical. In naturally-occurring, as well as structured media, the integrated effect is, however, typically small. Here, we demonstrate that, by exploiting the inherent and stable spin-orbit interaction of orbital angular momentum fiber modes, giant, scalable optical activity can be obtained, and that we can use this effect to realize a new type of wavemeter by exploiting its optical rotary dispersion. The device we construct provides for an instantaneous wavelength-measurement technique with high resolving power R = 3.4 × 10 (i.e., resolution < 0.3 pm at 1-μm wavelengths) and can also detect spectral bandwidths of known lineshapes with high sensitivity.

摘要

旋光性是一种光学活性,它被应用于化学、食品和制药等各种计量应用和工业中。然而,在自然发生和结构化的介质中,这种综合效应通常很小。在这里,我们证明了通过利用轨道角动量光纤模式固有的和稳定的自旋轨道相互作用,可以获得巨大的、可扩展的旋光性,并且我们可以利用这种效应通过利用其光学旋转色散来实现一种新型的波导。我们构建的设备提供了一种具有高分辨率 R = 3.4 × 10 的瞬时波长测量技术(即在 1-μm 波长下分辨率 < 0.3 pm),并且还可以以高灵敏度检测具有已知线形状的光谱带宽。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92d9/7568529/c8022eba1f90/41467_2020_18931_Fig1_HTML.jpg

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