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高序纳米复合亚波长光栅的激光制造

Laser Fabrication of Highly Ordered Nanocomposite Subwavelength Gratings.

作者信息

Andreeva Yaroslava, Suvorov Alexander, Grigoryev Evgeniy, Khmelenin Dmitry, Zhukov Mikhail, Makin Vladimir, Sinev Dmitry

机构信息

Institute of Laser Technologies, ITMO University, 197101 Saint Petersburg, Russia.

Interdisciplinary Resource Center for Nanotechnology of Research Park of SPbSU, Saint-Petersburg State University, 199034 Saint Petersburg, Russia.

出版信息

Nanomaterials (Basel). 2022 Aug 16;12(16):2811. doi: 10.3390/nano12162811.

Abstract

Optical nanogratings are widely used for different optical, photovoltaic, and sensing devices. However, fabrication methods of highly ordered gratings with the period around optical wavelength range are usually rather expensive and time consuming. In this article, we present high speed single-step approach for fabrication of highly ordered nanocomposite gratings with a period of less than 355 nm. For the purpose, we used commercially available nanosecond-pulsed fiber laser system operating at the wavelength of 355 nm. One-dimensional and two-dimensional nanostructures can be formed by direct laser treatment with different scan speed and intensity. These structures exhibit not only dispersing, but also anisotropic properties. The obtained results open perspectives for easier mass production of polarization splitters and filters, planar optics, and also for security labeling.

摘要

光学纳米光栅被广泛应用于不同的光学、光伏和传感设备。然而,周期在光学波长范围附近的高度有序光栅的制造方法通常相当昂贵且耗时。在本文中,我们提出了一种高速单步方法来制造周期小于355nm的高度有序纳米复合光栅。为此,我们使用了工作波长为355nm的市售纳秒脉冲光纤激光系统。通过以不同的扫描速度和强度进行直接激光处理,可以形成一维和二维纳米结构。这些结构不仅表现出色散特性,还具有各向异性。所获得的结果为偏振分束器和滤波器、平面光学器件的更容易大规模生产以及安全标记开辟了前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1d3/9416309/2ae3373ebdd9/nanomaterials-12-02811-g001.jpg

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