Nanopillar array with a λ/11 diameter fabricated by a kind of visible CW laser direct lithography system

Author:

Zhang Chen,Wang Kaige,Bai Jintao,Wang Shuang,Zhao Wei,Yang Fang,Gu Changzhi,Wang Guiren

Abstract

Abstract Nanoscale functional structures are indispensable elements in many fields of modern science. In this paper, nanopillar array with a pillar diameter far smaller than Abbe's diffraction limit is realized by a new kind of continuous wave (CW) laser direct lithography technology. With atomic force microscopy technology, the average diameter of nanopillars on thin OIR906 photoresist film is about 65 nm and the smallest diameter is 48 nm, which is about 1/11 of the incident laser wavelength. Also, the influences of coma and astigmatism effects to the shape and size of nanopillar are numerically simulated by utilizing vector integral. As far as we know, it is the first time that nanopillar array is implemented by a donut-shaped 532-nm visible CW laser. The study presents a new, simple, inexpensive, and effective approach for nanopillar/pore array fabrication.

Publisher

Springer Science and Business Media LLC

Subject

Condensed Matter Physics,General Materials Science

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