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Laser-induced periodic surface structures with ultrashort laser pulse
Alternative Title超短脉冲激光诱导周期性表面结构
Li, Chen1,2,3; Stoian, Razvan1; Cheng, Guang-Hua1,2
Source PublicationChinese Optics
Contribution Rank1
AbstractLaser-induced periodic surface structures(LIPSS) have a wide application prospect from sensing to solar power generation and photocatalysis mainly due to its nanoscale features and self-repetitive microscopic patterns. In this review we discuss various complex process of the interaction of ultrafast laser with matter during the formation of LIPSS, emphasizing the role of transient optical properties and surface structural changes. Then several representative LIPSS formation mechanisms are summarized and their respective advantages and disadvantages are discussed. Next, the change of materials during the formation of LIPSS is introduced, including the change of chemical composition, crystal structure and surface microstructure. Finally, the application of LIPSS in material surface treatment, optics and mechanics is reviewed. © 2018, China Science Publishing & Media LTD. All right reserved.
Indexed ByEI
PublisherEditorial Office of Chinese Optics
EI Accession Number20181204929841
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Document Type期刊论文
Corresponding AuthorCheng, Guang-Hua
Affiliation1.Laboratoire Hubert Curien, Université de Lyon, Université Jean Monnet, Saint Etienne; 42000, France;
2.State Key Laboratory of Transient Optics and Photonics, Xi'an Institute of Optics and Precision Mechanics, CAS, Xi'an; 710119, China;
3.College of Mechanical and Electrical Engineering, Shaanxi University of Science and Technology, Xi'an; 710012, China
Recommended Citation
GB/T 7714
Li, Chen,Stoian, Razvan,Cheng, Guang-Hua. Laser-induced periodic surface structures with ultrashort laser pulse[J]. Chinese Optics,2018,11(1):1-17.
APA Li, Chen,Stoian, Razvan,&Cheng, Guang-Hua.(2018).Laser-induced periodic surface structures with ultrashort laser pulse.Chinese Optics,11(1),1-17.
MLA Li, Chen,et al."Laser-induced periodic surface structures with ultrashort laser pulse".Chinese Optics 11.1(2018):1-17.
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