Reconstructing of Embedded High-Aspect-Ratio Nano-Voids Generated by Ultrafast Laser Bessel Beams
Ultrafast non-diffractive Bessel laser beams provide strong light confinement and show robust advantages for fabricating high-aspect-ratio nanoscale structures inside transparent materials. They take the form of nanoscale voids with typical diameters well below the wavelength and aspect ratio of mor...
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doaj-6cafd94406d4443790ab29937311c0af2020-11-25T03:43:28ZengMDPI AGMicromachines2072-666X2020-07-011167167110.3390/mi11070671Reconstructing of Embedded High-Aspect-Ratio Nano-Voids Generated by Ultrafast Laser Bessel BeamsTianqu Chen0Guodong Zhang1Yishan Wang2Xuelong Li3Razvan Stoian4Guanghua Cheng5State Key Laboratory of Transient Optics and Photonics, Xi’an Institute of Optics and Precision Mechanics of CAS, Xi’an 710119, ChinaElectronic Information College, and Center of Optical Imagery Analysis and Learning, Northwestern Polytechnical University, Xi’an 710072, ChinaState Key Laboratory of Transient Optics and Photonics, Xi’an Institute of Optics and Precision Mechanics of CAS, Xi’an 710119, ChinaElectronic Information College, and Center of Optical Imagery Analysis and Learning, Northwestern Polytechnical University, Xi’an 710072, ChinaLaboratoire Hubert Curien, UMR CNRS 5516, Université de Lyon, Université Jean Monnet, 42000 Saint Etienne, FranceElectronic Information College, and Center of Optical Imagery Analysis and Learning, Northwestern Polytechnical University, Xi’an 710072, ChinaUltrafast non-diffractive Bessel laser beams provide strong light confinement and show robust advantages for fabricating high-aspect-ratio nanoscale structures inside transparent materials. They take the form of nanoscale voids with typical diameters well below the wavelength and aspect ratio of more than 1000. Delivering 3D morphologies of such nanoscale voids is an important issue to evaluate the result for fabrication. However, the characterization of such laser-induced structures is a difficult task. Here, an accurate and time-saving tomography-like methodology is proposed and adopted for reconstructing the morphology of high-aspect-ratio nano-holes. The technique allows an accurate assertion of laser parameters and position on nano-structured features. The reconstructed configuration reveals that nanoholes morphologies have a close relationship with energy distribution in the focal region. It suggests that the configuration of micro-explosion can be controlled by laser energy deposition in the process of laser-matter interaction down to the nanoscale.https://www.mdpi.com/2072-666X/11/7/671bessel beamfemtosecond laserpicosecond laserfused silicamicro-nano holehigh-aspect-ratio |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Tianqu Chen Guodong Zhang Yishan Wang Xuelong Li Razvan Stoian Guanghua Cheng |
spellingShingle |
Tianqu Chen Guodong Zhang Yishan Wang Xuelong Li Razvan Stoian Guanghua Cheng Reconstructing of Embedded High-Aspect-Ratio Nano-Voids Generated by Ultrafast Laser Bessel Beams Micromachines bessel beam femtosecond laser picosecond laser fused silica micro-nano hole high-aspect-ratio |
author_facet |
Tianqu Chen Guodong Zhang Yishan Wang Xuelong Li Razvan Stoian Guanghua Cheng |
author_sort |
Tianqu Chen |
title |
Reconstructing of Embedded High-Aspect-Ratio Nano-Voids Generated by Ultrafast Laser Bessel Beams |
title_short |
Reconstructing of Embedded High-Aspect-Ratio Nano-Voids Generated by Ultrafast Laser Bessel Beams |
title_full |
Reconstructing of Embedded High-Aspect-Ratio Nano-Voids Generated by Ultrafast Laser Bessel Beams |
title_fullStr |
Reconstructing of Embedded High-Aspect-Ratio Nano-Voids Generated by Ultrafast Laser Bessel Beams |
title_full_unstemmed |
Reconstructing of Embedded High-Aspect-Ratio Nano-Voids Generated by Ultrafast Laser Bessel Beams |
title_sort |
reconstructing of embedded high-aspect-ratio nano-voids generated by ultrafast laser bessel beams |
publisher |
MDPI AG |
series |
Micromachines |
issn |
2072-666X |
publishDate |
2020-07-01 |
description |
Ultrafast non-diffractive Bessel laser beams provide strong light confinement and show robust advantages for fabricating high-aspect-ratio nanoscale structures inside transparent materials. They take the form of nanoscale voids with typical diameters well below the wavelength and aspect ratio of more than 1000. Delivering 3D morphologies of such nanoscale voids is an important issue to evaluate the result for fabrication. However, the characterization of such laser-induced structures is a difficult task. Here, an accurate and time-saving tomography-like methodology is proposed and adopted for reconstructing the morphology of high-aspect-ratio nano-holes. The technique allows an accurate assertion of laser parameters and position on nano-structured features. The reconstructed configuration reveals that nanoholes morphologies have a close relationship with energy distribution in the focal region. It suggests that the configuration of micro-explosion can be controlled by laser energy deposition in the process of laser-matter interaction down to the nanoscale. |
topic |
bessel beam femtosecond laser picosecond laser fused silica micro-nano hole high-aspect-ratio |
url |
https://www.mdpi.com/2072-666X/11/7/671 |
work_keys_str_mv |
AT tianquchen reconstructingofembeddedhighaspectrationanovoidsgeneratedbyultrafastlaserbesselbeams AT guodongzhang reconstructingofembeddedhighaspectrationanovoidsgeneratedbyultrafastlaserbesselbeams AT yishanwang reconstructingofembeddedhighaspectrationanovoidsgeneratedbyultrafastlaserbesselbeams AT xuelongli reconstructingofembeddedhighaspectrationanovoidsgeneratedbyultrafastlaserbesselbeams AT razvanstoian reconstructingofembeddedhighaspectrationanovoidsgeneratedbyultrafastlaserbesselbeams AT guanghuacheng reconstructingofembeddedhighaspectrationanovoidsgeneratedbyultrafastlaserbesselbeams |
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1724519770431160320 |