Damage threshold evaluation of thin metallic films exposed to femtosecond laser pulses: The role of material thickness

被引:16
|
作者
Tsibidis, G. D. [1 ,2 ]
Mansour, D. [1 ]
Stratakis, E. [1 ,3 ]
机构
[1] Fdn Res & Technol FORTH, Inst Elect Struct & Laser IESL, N Plastira 100,Vassilika Vouton, Iraklion 70013, Crete, Greece
[2] Univ Crete, Dept Mat Sci & Technol, Iraklion 71003, Heraklion, Greece
[3] Univ Crete, Dept Phys, Iraklion 71003, Heraklion, Greece
来源
关键词
Femtosecond laser pulses; Modelling laser -matter interaction; Thin metallic films; Damage threshold; PERIODIC SURFACE-STRUCTURES; OPTICAL-PROPERTIES; ELECTRON DYNAMICS; GOLD-FILMS; ABLATION; DEPENDENCE; SILICA;
D O I
10.1016/j.optlastec.2022.108484
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
The employment of femtosecond pulsed lasers has received significant attention due to its capability to facilitate fabrication of precise patterns at the micro-and nano-lengths scales. A key issue for efficient material processing is the accurate determination of the damage threshold that is associated with the laser peak fluence at which minimal damage occurs on the surface of the irradiated solid. Despite a wealth of previous reports that focused on the evaluation of the laser conditions that lead to the onset of damage, the investigation of both the optical and thermal response of thin films of sizes comparable to the optical penetration depth is still an unexplored area. In this report, a detailed theoretical analysis of the impact of various parameters such as the photon energies and material thickness on the damage threshold for various metals (Au, Ag, Cu, Al, Ni, Ti, Cr, Stainless Steel) is investigated. A multiscale physical model is used that correlates the energy absorption, electron excitation, relaxation processes and minimal surface modification. The satisfactory agreement of the theoretical model with some experimental results indicates that the damage threshold evaluation method could represent a systematic approach towards designing efficient laser-based fabrication systems and optimizing the processing outcome for various applications.
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页数:9
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