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高阶径向偏振光束照射下微球产生的更尖锐的光子纳米射流。

Sharper photonic nanojets generated by microspheres under higher-order radially polarized beam illumination.

作者信息

Xing Zhenyu, Wang Xianghui, Fu Yuhang, Liu Wenjing, Cheng Jierong, Zeng Ming

出版信息

Appl Opt. 2021 Dec 10;60(35):10816-10824. doi: 10.1364/AO.443484.

Abstract

Photonic nanojets (PNJs) generated from a single microsphere illuminated by higher-order radially polarized (RP) beams are investigated. The effects of the size parameters of higher-order RP beams, the refractive index, and radius of the dielectric microsphere on the full width at half-maximum and peak intensity of the PNJ are numerically discussed and qualitatively interpreted. The results show that the minimal width of the PNJ can be obtained by optimally adjusting the size parameter. The PNJ beam waist becomes gradually narrower with increasing the radial mode number. As compared to the case of plane wave illumination, sharper PNJs are more easily generated when irradiated by a higher-order RP beam, even for microspheres with lower refractive indices or larger radii. Our findings can promote potential applications of PNJs in a variety of fields including super-resolution microscopy, nanolithography, and optical data storage.

摘要

研究了由高阶径向偏振(RP)光束照射单个微球产生的光子纳米射流(PNJ)。数值讨论并定性解释了高阶RP光束的尺寸参数、介电微球的折射率和半径对PNJ半高宽和峰值强度的影响。结果表明,通过优化调整尺寸参数可以获得PNJ的最小宽度。随着径向模数的增加,PNJ束腰逐渐变窄。与平面波照明的情况相比,即使对于折射率较低或半径较大的微球,当用高阶RP光束照射时也更容易产生更尖锐的PNJ。我们的研究结果可以促进PNJ在包括超分辨率显微镜、纳米光刻和光数据存储在内的各种领域的潜在应用。

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