Laser-induced layers peeling of sputtering coatings at 1064 nm wavelength

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作者
Kesheng Guo
Yanzhi Wang
Ruiyi Chen
Yuhui Zhang
Anna Sytchkova
Meiping Zhu
Kui Yi
Hongbo He
Jianda Shao
机构
[1] Shanghai Institute of Optics and Fine Mechanics,Laboratory of Thin Film Optics, Key Laboratory of Materials for High Power Laser
[2] Ji Hua Laboratory,undefined
[3] CAS Center for Excellence in Ultra-intense Laser Science,undefined
[4] ENEA Optical Coatings Group,undefined
来源
Scientific Reports | / 11卷
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摘要
Large-scale layers peeling after the laser irradiation of dual ion beam sputtering coatings is discovered and a model is established to explain it. The laser damage morphologies relate to the laser fluence, showing thermomechanical coupling failure at low energy and coating layers separation at high energy. High-pressure gradients appear in the interaction between laser and coatings, resulting in large-scale layer separation. A two-step laser damage model including defect-induced damage process and ionized air wave damage process is proposed to explain the two phenomena at different energy. At relatively high energies (higher than 20 J/cm2), ionization of the air can be initiated, leading to a peeling off effect. The peeling effect is related to the thermomechanical properties of the coating materials.
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