论文标题

宽光谱光学合成孔径成像通过空间强度干涉法

Wide-spectrum optical synthetic aperture imaging via spatial intensity interferometry

论文作者

Chu, Chunyan, Liu, Zhentao, Chen, Mingliang, Shao, Xuehui, Zhao, Yuejin, Han, Shensheng

论文摘要

高分辨率成像是使用越来越大的光圈和较短波长实现的。光孔合成是一种重要的高分辨率成像技术。常规的长基线幅度干涉仪易于无法控制的相位波动,并且随着波长的降低,技术难度迅速增加。受HBT实验启发的强度干涉法本质上对相位波动不敏感,但遭受了狭窄的光谱带宽的影响,导致缺乏检测灵敏度。在这项研究中,我们提出基于空间强度干涉法的光学合成孔径成像。这不仅实现了单个镜头中衍射限量的光孔的合成,而且还可以具有宽光谱带宽的成像。并且该方法对子孔径之间的光路差不敏感。模拟和实验呈现光孔合成衍射限制成像,通过可见光的100 $ nm $频谱宽度中的空间强度干涉量,其子量值之间的最大光路差达到$69.36λ$。预计该技术将在光波长下在公里长的基线上提供光孔合成的解决方案。

High resolution imaging is achieved using increasingly larger apertures and successively shorter wavelengths. Optical aperture synthesis is an important high-resolution imaging technology used in astronomy. Conventional long baseline amplitude interferometry is susceptible to uncontrollable phase fluctuations, and the technical difficulty increases rapidly as the wavelength decreases. The intensity interferometry inspired by HBT experiment is essentially insensitive to phase fluctuations, but suffers from a narrow spectral bandwidth which results in a lack of detection sensitivity. In this study, we propose optical synthetic aperture imaging based on spatial intensity interferometry. This not only realizes diffraction-limited optical aperture synthesis in a single shot, but also enables imaging with a wide spectral bandwidth. And this method is insensitive to the optical path difference between the sub-apertures. Simulations and experiments present optical aperture synthesis diffraction-limited imaging through spatial intensity interferometry in a 100 $nm$ spectral width of visible light, whose maximum optical path difference between the sub-apertures reach $69.36λ$. This technique is expected to provide a solution for optical aperture synthesis over kilometer-long baselines at optical wavelengths.

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