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用于塑造亚衍射横向光学针的椭圆形超临界透镜。

Elliptical Supercritical Lens for Shaping Sub-Diffractive Transverse Optical Needle.

作者信息

Lei Jian, Wang Minghui, Wu Jin, Duan Hui, Zhang Kun, Wang Sicong, Cao Yaoyu, Li Xiangping, Qin Fei

机构信息

Guangdong Provincial Key Laboratory of Optical Fiber Sensing and Communications, Institute of Photonics Technology, Jinan University, Guangzhou 510632, China.

出版信息

Nanomaterials (Basel). 2023 Jan 5;13(2):242. doi: 10.3390/nano13020242.

Abstract

Supercritical lens can create a sub-diffraction-limited focal spot in the far field, providing a promising route for the realization of label-free super-resolution imaging through the point scanning mechanism. However, all of the reported supercritical lenses have circular shape configurations, and produce isotropic sub-diffraction-limited focal spots in the focal plane. Here, we propose and experientially demonstrate a sub-diffraction transverse optical needle by using an elliptical supercritical lens. Through breaking the circular symmetry and introducing ellipticity to the lens, a uniform sub-diffractive transverse optical needle with lateral length and width of 6λ/NA and 0.45λ/NA, respectively, was successfully created in the focal plane. Further, elliptical sector-shape cutting with an optimized apex angle of 60 degrees can lead to suppressed subsidiary focusing for improved uniformity and condensed field intensity of the transverse optical needle. The demonstration of sub-diffractive transverse optical needle with a high aspect ratio (length to width ratio) of 13:1 may find potential applications in line-scanning microscopy for video-rate label-free super-resolution imaging, and also enable advances in the fields from laser manufacturing to optical manipulation.

摘要

超临界透镜可以在远场中产生亚衍射极限焦斑,为通过点扫描机制实现无标记超分辨率成像提供了一条有前景的途径。然而,所有已报道的超临界透镜都具有圆形形状配置,并且在焦平面上产生各向同性的亚衍射极限焦斑。在此,我们提出并通过实验证明了一种使用椭圆形超临界透镜的亚衍射横向光针。通过打破圆形对称性并在透镜中引入椭圆率,在焦平面上成功创建了一个均匀的亚衍射横向光针,其横向长度和宽度分别为6λ/NA和0.45λ/NA。此外,采用优化顶角为60度的椭圆扇形切割可以抑制副聚焦,从而提高横向光针的均匀性和场强集中度。高纵横比(长宽比)为13:1的亚衍射横向光针的演示可能在用于视频速率无标记超分辨率成像的线扫描显微镜中找到潜在应用,并且还能够推动从激光制造到光学操纵等领域的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b91/9860760/0e1dc3fdc52b/nanomaterials-13-00242-g0A1.jpg

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