Wu M X, Huang B J, Chen R, Yang Y, Wu J F, Ji R, Chen X D, Hong M H
Opt Express. 2015 Jul 27;23(15):20096-103. doi: 10.1364/OE.23.020096.
A novel design of decorating microsphere surface with concentric rings to modulate the photonic nanojet (PNJ) is investigated. By introducing the concentric ring structures into the illumination side of the microspheres, a reduction of the full width at half maximum (FWHM) intensity of the PNJ by 29.1%, compared to that without the decoration, can be achieved numerically. Key design parameters, such as ring number and depth, are analyzed. Engineered microsphere with four uniformly distributed rings etched at a depth of 1.2 μm and width of 0.25 μm can generate PNJ at a FWHM of 0.485 λ (λ = 400nm). Experiments were carried out by direct observation of the PNJ with an optical microscope under 405 nm laser illumination. As a result, shrinking of PNJ beam size of 28.0% compared to the case without the rings has been achieved experimentally. Sharp FWHM of this design can be beneficial to micro/nanoscale fabrication, optical super-resolution imaging, and sensing.
研究了一种用同心环装饰微球表面以调制光子纳米射流(PNJ)的新颖设计。通过将同心环结构引入微球的照明侧,与未装饰的情况相比,数值上可实现PNJ半高宽(FWHM)强度降低29.1%。分析了诸如环数和深度等关键设计参数。蚀刻有四个均匀分布的环、深度为1.2μm且宽度为0.25μm的工程微球可以在0.485λ(λ = 400nm)的FWHM下产生PNJ。通过在405nm激光照明下用光学显微镜直接观察PNJ进行实验。结果,实验上已实现与无环情况相比PNJ光束尺寸缩小28.0%。这种设计的尖锐FWHM有利于微/纳米级制造、光学超分辨率成像和传感。