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  4. Formation of nanogratings in a porous glass immersed in water by femtosecond laser irradiation
 
conference paper

Formation of nanogratings in a porous glass immersed in water by femtosecond laser irradiation

Liao, Yang
•
Ni, Jielei
•
Qiao, Lingling
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2015
LASER APPLICATIONS IN MICROELECTRONIC AND OPTOELECTRONIC MANUFACTURING (LAMOM) XX
Conference on Laser Applications in Microelectronic and Optoelectronic Manufacturing (LAMOM) XX

Irradiation of intense ultrafast laser pulses in glasses can lead to formation of nanogratings whose periods are significantly smaller than the incident irradiation wavelength. The mechanism of the exotic phenomenon is still under hot debate. Here, we access the snapshots of morphologies in the laser affected regions in a porous glass which reveal the evolution of the formation of nanogratings with increasing number of laser pulses. Combined with further theoretical analyses, our observation provides important clues which suggest that excitation of standing plasma waves at the interfaces between areas modified and unmodified by the femtosecond laser irradiation plays a crucial role for promoting the growth of periodic nanogratings. The finding indicates that the formation of volume nanogratings induced by irradiation of femtosecond laser pulses is initiated with a mechanism similar to the formation of surface nanoripples.

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Type
conference paper
DOI
10.1117/12.2076905
Author(s)
Liao, Yang
Ni, Jielei
Qiao, Lingling
Huang, Min
Bellouard, Yves  
Sugioka, Koji
Cheng, Ya
Date Issued

2015

Published in
LASER APPLICATIONS IN MICROELECTRONIC AND OPTOELECTRONIC MANUFACTURING (LAMOM) XX
Volume

9350

Subjects

laser materials processing

•

ultrafast lasers

•

glass

•

amorphous materials

•

multiphoton processes

•

nanostructure fabrication

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
GALATEA  
Event nameEvent placeEvent date
Conference on Laser Applications in Microelectronic and Optoelectronic Manufacturing (LAMOM) XX

San Francisco, CA, USA

February 09-12, 2015

Available on Infoscience
July 21, 2015
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/116536
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