论文标题

替换空间及其在超薄成像系统上的应用

An optic to replace space and its application towards ultra-thin imaging systems

论文作者

Reshef, Orad, DelMastro, Michael P., Bearne, Katherine K. M., Alhulaymi, Ali H., Giner, Lambert, Boyd, Robert W., Lundeen, Jeff S.

论文摘要

几个世纪以改善成像的努力集中在完善和结合镜片上,以获得更好的光学性能和新功能。纳米技术的到来使这种努力工程的表面称为金属,这有望使成像设备更加紧凑。但是,这一诺言是透镜之间的空间,这对于图像形成至关重要,但占成像系统中最大的空间至关重要。在这里,我们通过介绍并在实验上证明光学“空间板”的概念并通过实验来解决这个问题,这是一种有效传播光的视线,其距离可能比板厚度更长。这样的视频将缩小未来的成像系统,从而为超薄整体摄像机打开了可能性。更广泛地说,可以应用空间板来微型化设备,以隐式操纵光的空间曲线,例如太阳能集中器,光源的准直仪,集成的光学组件和光谱仪。

Centuries of effort to improve imaging has focused on perfecting and combining lenses to obtain better optical performance and new functionalities. The arrival of nanotechnology has brought to this effort engineered surfaces called metalenses, which promise to make imaging devices more compact. However, unaddressed by this promise is the space between the lenses, which is crucial for image formation but takes up by far the most room in imaging systems. Here, we address this issue by presenting the concept of and experimentally demonstrating an optical 'spaceplate', an optic that effectively propagates light for a distance that can be considerably longer than the plate thickness. Such an optic would shrink future imaging systems, opening the possibility for ultra-thin monolithic cameras. More broadly, a spaceplate can be applied to miniaturize important devices that implicitly manipulate the spatial profile of light, for example, solar concentrators, collimators for light sources, integrated optical components, and spectrometers.

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