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In this paper, we propose a novel laser-induced photonic nanojet for micro/nanofabrication. The full width at half maximum of the nanojet is smaller than the diffraction limit, thus allowing for the fabrication of structures at the submicron scale. We first developed the experimental nanojet system, which consists of a laser source, an objective lens, a charge-coupled device camera, and a mobile platform...
The photonic nanojet generated by microsphere-based modulation of incident light has attracted much research attention in recent years because its full width at half maximum (FWHM) is less than the optical diffraction limit, which enables the microsphere to serve as a superlens to achieve super-resolution imaging. In addition to its sub-diffraction limited FWHM, the intensity of the photonic nanojet...
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