光学
数值孔径
材料科学
紫外线
可见光谱
消色差透镜
色差
显微镜
波长
多光谱图像
镜头(地质)
显微镜
光电子学
物理
色阶
计算机科学
计算机视觉
作者
Aleksandr Barulin,Hyemi Park,Byullee Park,Inki Kim
出处
期刊:Photoacoustics
[Elsevier]
日期:2023-08-01
卷期号:32: 100545-100545
被引量:4
标识
DOI:10.1016/j.pacs.2023.100545
摘要
Photoacoustic microscopy is advancing with research on utilizing ultraviolet and visible light. Dual-wavelength approaches are sought for observing DNA/RNA- and vascular-related disorders. However, the availability of high numerical aperture lenses covering both ultraviolet and visible wavelengths is severely limited due to challenges such as chromatic aberration in the optics. Herein, we present a groundbreaking proposal as a pioneering simulation study for incorporating multilayer metalenses into ultraviolet-visible photoacoustic microscopy. The proposed metalens has a thickness of 1.4 µm and high numerical aperture of 0.8. By arranging cylindrical hafnium oxide nanopillars, we design an achromatic transmissive lens for 266 and 532 nm wavelengths. The metalens achieves a diffraction-limited focal spot, surpassing commercially available objective lenses. Through three-dimensional photoacoustic simulation, we demonstrate high-resolution imaging with superior endogenous contrast of targets with ultraviolet and visible optical absorption bands. This metalens will open new possibilities for downsized multispectral photoacoustic microscopy in clinical and preclinical applications.
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