Observation of self-assembled periodic nano-structures induced by femtosecond laser in both ablation and deposition regimes

被引:0
|
作者
Tang, Mingzhen [1 ]
Zhang, Haitao [2 ,3 ]
Her, Tsing-Hua [1 ,3 ]
机构
[1] Univ North Carolina Charlotte, Dept Phys & Opt, 9201 Univ City Blvd, Charlotte, NC 28223 USA
[2] Univ North Carolina Charlotte, Dept Mech Engn, Charlotte, NC 28223 USA
[3] Univ North Carolina Charlotte, Ctr Optoelect & Opt Commun, Charlotte, NC 28223 USA
关键词
laser material processing; femtosecond laser; periodic surface structure; laser CVD; laser ablation; micromachining;
D O I
10.1117/12.763790
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
We observed the spontaneous formation of periodic nano-structures in both femtosecond laser ablation and deposition. The former involved 400-nm femtosecond pulses from a 250-KHz regenerated amplified mode-locked Ti:sapphire laser and periodic nanocracks and the nano-structure are in the form of periodic nanocracks. in the substrate, the latter applied an 80-MHz mode-locked Ti:sapphire oscillator with pulse energy less than half nanojoule in a laser-induced chemical vapor deposition configuration and tungsten nanogratings grow heterogeneously on top of the substrates. These two observed periodic nanostructures have opposite orientations respecting to laser polarization: the periodic nanocracks are perpendicular to, whereas the deposited tungsten nanogratings are parallel to laser polarization direction. By translating the substrate respecting to the laser focus, both the periodic nanocrack and tungsten nanograting extend to the whole scanning range. The deposited tungsten nanogratings possess excellent uniformity on both the grating period and tooth length. Both the attributes can be tuned precisely by controlling the laser power and scanning speed. Furthermore, we discovered that the teeth of transverse tungsten nanogratings are self aligned along their axial direction during multiple scanning with appropriate offset between scans. We demonstrate the feasibility of fabricating large-area one-dimensional grating by exploiting such unique property. These distinct phenomena of nanocracks and tungsten nanogratings indicate different responsible mechanisms.
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页数:7
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