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Interaction of femtosecond laser pulses with tempera paints

机译:飞秒激光脉冲与蛋彩漆的相互作用

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For the implementation of femtosecond (fs) laser cleaning methodologies of light-sensitive substrates as those encountered in artistic paintings, the interaction between fs laser pulses and painting components has to be well characterized. In this work, the modifications induced by fs laser irradiation of paints are examined in unvarnished aged model temperas. Irradiation at fluences below or above the ablation thresholds by 120 fs pulses at 795 nm from a Ti:Sapphire laser of unpigmented and traditional artist's pigment temperas (cinnabar and chrome yellow) is shown to result in various degrees of discolouration and changes of the laser-induced fluorescence signal. Fourier transform FT-Raman (at 1064 nm) and micro-Raman (at 785 nm) spectroscopic measurements were carried out to assess the changes induced. Noticeable modifications of the Raman bands of the pigments are absent while build-up of extra bands of amorphous carbon (indicative of carbonization or charring) does not take place, in contrast with previous observations upon irradiation with 248 nm, 25 ns pulses. It is concluded that IR fs irradiation provides a high degree of control over the induced modifications, a feature of interest in the design of new laser restoration schemes.
机译:为了在艺术绘画中实现对光敏基材的飞秒(fs)激光清洁方法的实现,必须很好地表征fs激光脉冲与绘画组件之间的相互作用。在这项工作中,在未涂漆的老化模型温度下检查了由fs激光照射引起的涂料改性。来自色素和传统艺术家的颜料色温(朱砂和铬黄)的Ti:蓝宝石激光器在795 nm处以低于或高于烧蚀阈值的通量照射120 fs脉冲后,会导致不同程度的变色和激光-诱导的荧光信号。进行了傅里叶变换FT拉曼光谱(在1064 nm)和微拉曼光谱(在785 nm),以评估引起的变化。与先前在248 nm,25 ns脉冲下的观察结果相反,没有出现颜料的拉曼光谱带的明显修饰,而没有形成额外的非晶碳带(表明碳化或炭化)。结论是,IR fs辐照提供了对诱导修饰的高度控制,这是新激光修复方案设计中关注的一个特征。

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