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Submicron foaming in gelatine by nanosecond and femtosecond pulsed laser irradiation

机译:纳秒和飞秒脉冲激光辐照在明胶中产生亚微米泡沫

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摘要

We compare the foaming characteristics induced by irradiation with single ns and fs laser pulses of UV, VIS and IR wavelengths on gelatines differing in gel strength (bloom values 75 and 225) and in crosslinking degree. We have observed that while laser irradiation with nanoseconds leads to the formation of a microfoam layer at 266 nm, and melting and crater formation at longer wavelengths (532 and 1064 nm), fs pulse irradiation leads to submicron foaming at all wavelengths studied (266, 400 and 800 nm). These results show the possibility of controlling the submicrometric foam structure in this biomaterial and can shed light into the working mechanisms of fs laser nanoprocessing in biomaterials, where increase of temperature, thermoelastic stress generation, and stress-induced bubble formation are mediated by the generated plasma.
机译:我们比较了在凝胶强度(水银值75和225)和交联度不同的明胶上用紫外线,VIS和IR波长的ns和fs单个ns和fs激光脉冲辐照诱导的发泡特性。我们已经观察到,虽然纳秒级的激光辐照会导致在266 nm处形成微泡沫层,并在更长的波长(532和1064 nm)处形成熔融和火山口,但fs脉冲辐照会在所有研究的波长下导致亚微米泡沫化(266, 400和800 nm)。这些结果表明,有可能控制这种生物材料中的亚微米泡沫结构,并且可以将光照射到生物材料中fs激光纳米加工的工作机理中,其中温度的升高,热弹性应力的产生以及应力引起的气泡的形成是由所产生的等离子体介导的。 。

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