TY - JOUR
T1 - Femtosecond laser-induced periodic structures
T2 - mechanisms, techniques, and applications
AU - Zhang, Yuchan
AU - Jiang, Qilin
AU - Long, Mingquan
AU - Han, Ruozhong
AU - Cao, Kaiqiang
AU - Zhang, Shian
AU - Feng, Donghai
AU - Jia, Tianqing
AU - Sun, Zhenrong
AU - Qiu, Jianrong
AU - Xu, Hongxing
N1 - Publisher Copyright:
© The Author(s) 2022.
PY - 2022
Y1 - 2022
N2 - Over the past two decades, femtosecond laser-induced periodic structures (femtosecond-LIPSs) have become ubiquitous in a variety of materials, including metals, semiconductors, dielectrics, and polymers. Femtosecond-LIPSs have become a useful laser processing method, with broad prospects in adjusting material properties such as structural color, data storage, light absorption, and luminescence. This review discusses the formation mechanism of LIPSs, specifically the LIPS formation processes based on the pump-probe imaging method. The pulse shaping of a femtosecond laser in terms of the time/frequency, polarization, and spatial distribution is an efficient method for fabricating high-quality LIPSs. Various LIPS applications are also briefly introduced. The last part of this paper discusses the LIPS formation mechanism, as well as the high-efficiency and high-quality processing of LIPSs using shaped ultrafast lasers and their applications.
AB - Over the past two decades, femtosecond laser-induced periodic structures (femtosecond-LIPSs) have become ubiquitous in a variety of materials, including metals, semiconductors, dielectrics, and polymers. Femtosecond-LIPSs have become a useful laser processing method, with broad prospects in adjusting material properties such as structural color, data storage, light absorption, and luminescence. This review discusses the formation mechanism of LIPSs, specifically the LIPS formation processes based on the pump-probe imaging method. The pulse shaping of a femtosecond laser in terms of the time/frequency, polarization, and spatial distribution is an efficient method for fabricating high-quality LIPSs. Various LIPS applications are also briefly introduced. The last part of this paper discusses the LIPS formation mechanism, as well as the high-efficiency and high-quality processing of LIPSs using shaped ultrafast lasers and their applications.
KW - birefringent effects
KW - femtosecond pulse shaping
KW - formation mechanisms
KW - laser-induced periodic structures (LIPSs)
KW - optical absorption
KW - photoluminescence
KW - pump-probe imaging
KW - structural color
UR - https://www.scopus.com/pages/publications/85137143199
U2 - 10.29026/oes.2022.220005
DO - 10.29026/oes.2022.220005
M3 - 文献综述
AN - SCOPUS:85137143199
SN - 2097-0382
VL - 1
JO - Opto-Electronic Science
JF - Opto-Electronic Science
IS - 6
ER -