High-Efficiency Fabrication of Geometric Phase Elements by Femtosecond-Laser Direct Writing

The nanoresolution of geometric phase elements for visible wavelengths calls for a flexible technology with high throughout and free from vacuum. In this article, we propose a high-efficiency and simple manufacturing method for the fabrication of geometric phase elements with femtosecond–laser direc...

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Main Authors: Shuai Xu, Hua Fan, Si-Jia Xu, Zhen-Ze Li, Yuhao Lei, Lei Wang, Jun-Feng Song
Format: Article
Language:English
Published: MDPI AG 2020-09-01
Series:Nanomaterials
Subjects:
Online Access:https://www.mdpi.com/2079-4991/10/9/1737
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spelling doaj-bbc46070a29f4a79b38532aa5ce5a99f2020-11-25T03:35:49ZengMDPI AGNanomaterials2079-49912020-09-01101737173710.3390/nano10091737High-Efficiency Fabrication of Geometric Phase Elements by Femtosecond-Laser Direct WritingShuai Xu0Hua Fan1Si-Jia Xu2Zhen-Ze Li3Yuhao Lei4Lei Wang5Jun-Feng Song6State Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University, Changchun 130012, ChinaState Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instrument, Tsinghua University, Beijing 100084, ChinaState Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University, Changchun 130012, ChinaState Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University, Changchun 130012, ChinaOptoelectronics Research Centre, University of Southampton, Southampton SO17 1BJ, UKState Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University, Changchun 130012, ChinaState Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University, Changchun 130012, ChinaThe nanoresolution of geometric phase elements for visible wavelengths calls for a flexible technology with high throughout and free from vacuum. In this article, we propose a high-efficiency and simple manufacturing method for the fabrication of geometric phase elements with femtosecond–laser direct writing (FsLDW) and thermal annealing by combining the advantages of high-efficiency processing and thermal smoothing effect. By using a femtosecond laser at a wavelength of 343 nm and a circular polarization, free-form nanogratings with a period of 300 nm and 170-nm-wide grooves were obtained in 50 s by laser direct ablation at a speed of 5 mm/s in a non-vacuum environment. After fine-tuning through a hot-annealing process, the surface morphology of the geometric phase element was clearly improved. With this technology, we fabricated blazed gratings, metasurface lens, vortex Q-plates and “M” holograms and confirmed the design performance by analyzing their phases at the wavelength of 808 nm. The efficiency and capabilities of our proposed method can pave the possible way to fabricate geometric phase elements with essentially low loss, high-temperature resistance, high phase gradients and novel polarization functionality for potentially wide applications.https://www.mdpi.com/2079-4991/10/9/1737nanofabricationgeometric phase elementsfemtosecond laserannealing technology
collection DOAJ
language English
format Article
sources DOAJ
author Shuai Xu
Hua Fan
Si-Jia Xu
Zhen-Ze Li
Yuhao Lei
Lei Wang
Jun-Feng Song
spellingShingle Shuai Xu
Hua Fan
Si-Jia Xu
Zhen-Ze Li
Yuhao Lei
Lei Wang
Jun-Feng Song
High-Efficiency Fabrication of Geometric Phase Elements by Femtosecond-Laser Direct Writing
Nanomaterials
nanofabrication
geometric phase elements
femtosecond laser
annealing technology
author_facet Shuai Xu
Hua Fan
Si-Jia Xu
Zhen-Ze Li
Yuhao Lei
Lei Wang
Jun-Feng Song
author_sort Shuai Xu
title High-Efficiency Fabrication of Geometric Phase Elements by Femtosecond-Laser Direct Writing
title_short High-Efficiency Fabrication of Geometric Phase Elements by Femtosecond-Laser Direct Writing
title_full High-Efficiency Fabrication of Geometric Phase Elements by Femtosecond-Laser Direct Writing
title_fullStr High-Efficiency Fabrication of Geometric Phase Elements by Femtosecond-Laser Direct Writing
title_full_unstemmed High-Efficiency Fabrication of Geometric Phase Elements by Femtosecond-Laser Direct Writing
title_sort high-efficiency fabrication of geometric phase elements by femtosecond-laser direct writing
publisher MDPI AG
series Nanomaterials
issn 2079-4991
publishDate 2020-09-01
description The nanoresolution of geometric phase elements for visible wavelengths calls for a flexible technology with high throughout and free from vacuum. In this article, we propose a high-efficiency and simple manufacturing method for the fabrication of geometric phase elements with femtosecond–laser direct writing (FsLDW) and thermal annealing by combining the advantages of high-efficiency processing and thermal smoothing effect. By using a femtosecond laser at a wavelength of 343 nm and a circular polarization, free-form nanogratings with a period of 300 nm and 170-nm-wide grooves were obtained in 50 s by laser direct ablation at a speed of 5 mm/s in a non-vacuum environment. After fine-tuning through a hot-annealing process, the surface morphology of the geometric phase element was clearly improved. With this technology, we fabricated blazed gratings, metasurface lens, vortex Q-plates and “M” holograms and confirmed the design performance by analyzing their phases at the wavelength of 808 nm. The efficiency and capabilities of our proposed method can pave the possible way to fabricate geometric phase elements with essentially low loss, high-temperature resistance, high phase gradients and novel polarization functionality for potentially wide applications.
topic nanofabrication
geometric phase elements
femtosecond laser
annealing technology
url https://www.mdpi.com/2079-4991/10/9/1737
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AT zhenzeli highefficiencyfabricationofgeometricphaseelementsbyfemtosecondlaserdirectwriting
AT yuhaolei highefficiencyfabricationofgeometricphaseelementsbyfemtosecondlaserdirectwriting
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