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Flexible Photonic Nanojet Formed by Cylindrical Graded-Index Lens

机译:圆柱渐变折射率透镜形成的柔性光子纳米射流

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Photonic nanojets formed in the vicinity of the cylindrical graded-index lens with different types of index grading are numerically investigated based on the finite-difference time-domain method. The cylindrical lens with 1600 nm diameter is assembled by eighty-seven hexagonally arranged close-contact nanofibers with 160 nm diameter. Simulation and analysis results show that it is possible to engineer and elongate the photonic nanojet. Using differently graded-index nanofibers as building elements to compose this lens, the latitudinal and longitudinal sizes of the produced photonic nanojet can be flexibly adjusted. At an incident wavelength of 532 nm, the cylindrical lens with index grading = 2 can generate a photonic nanojet with a waist about 173 nm (0.32 wavelength). This lens could potentially contribute to the development of a novel device for breaking the diffraction limit in the field of optical nano-scope and bio-photonics.
机译:基于时域有限差分法,对形成在不同折射率等级的柱面折射率透镜附近的光子纳米射流进行了数值研究。直径为1600 nm的圆柱透镜是由八十七个六角形排列的直径为160 nm的紧密接触纳米纤维组装而成的。仿真和分析结果表明,可以对光子纳米射流进行设计和拉长。使用折射率梯度不同的纳米纤维作为构成该透镜的构件,可以灵活地调节所产生的光子纳米射流的横向和纵向尺寸。在532 nm的入射波长下,折射率渐变= 2的柱面透镜可以生成腰部约为173 nm(波长为0.32)的光子纳米射流。这种透镜可能会有助于开发一种新颖的设备,以打破光学纳米显微镜和生物光子学领域的衍射极限。

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