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Study of the effects of low-fluence laser irradiation on wall paintings: Test measurements on fresco model samples

机译:低通量激光辐照对壁画的影响研究:壁画模型样品的测试测量

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摘要

Laser-induced fluorescence is widely applied in several fields as a diagnostic tool to characterise organic and inorganic materials and could be also exploited for non-invasive remote investigation of wall paintings using the fluorescence lidar technique. The latter relies on the use of a low-fluence pulsed UV laser and a telescope to carry out remote spectroscopy on a given target. A first step to investigate the applicability of this technique is to assess the effects of low-fluence laser radiation on wall paintings. This paper presents a study devoted to investigate the effects of pulsed UV laser radiation on a set of fresco model samples prepared using different pigments. To irradiate the samples we used a tripled-frequency Q-switched Nd:YAG laser (emission wavelength: 355 nm; pulse width: 5 ns). We varied the laser fluence from 0.1 mJ/cm~2 to 1 mJ/cm~2 and the number of laser pulses from 1 to 500 shots. We characterised the investigated materials using several diagnostic and analytical techniques (colorimetry, optical microscopy, fibre optical reflectance spectroscopy and ATR-FT-IR microscopy) to compare the surface texture and their composition before and after laser irradiation. Results open good prospects for a non-invasive investigation of wall paintings using the fluorescence lidar technique.
机译:激光诱导的荧光已广泛应用于多个领域,作为表征有机和无机材料的诊断工具,也可用于利用荧光激光雷达技术对壁画进行无创远程研究。后者依靠使用低通量脉冲紫外激光和望远镜对给定目标进行远程光谱分析。研究该技术的适用性的第一步是评估低通量激光辐射对壁画的影响。本文提出了一项研究,旨在研究脉冲UV激光辐射对使用不同颜料制备的一组壁画模型样品的影响。为了照射样品,我们使用了三倍频调Q开关Nd:YAG激光器(发射波长:355 nm;脉冲宽度:5 ns)。我们将激光能量密度从0.1 mJ / cm〜2更改为1 mJ / cm〜2,并将激光脉冲的数量从1更改为500发。我们使用几种诊断和分析技术(比色法,光学显微镜,光纤光反射光谱法和ATR-FT-IR显微镜)对所研究的材料进行了表征,以比较激光辐照前后的表面纹理及其组成。结果为使用荧光激光雷达技术进行无创壁画研究打开了良好的前景。

著录项

  • 来源
    《Applied Surface Science》 |2013年第1期|184-194|共11页
  • 作者单位

    Nello Carrara' Institute of Applied Physics-National Research Council of Italy (CNR-IFAC), Via Madonna del Piano, 10, 1-50019 Sesto Fiorentino, Firenze, Italy;

    Nello Carrara'Applied Physics Institute-National Research Council of Italy (CNR-IFAC), Firenze, Italy;

    Institute for the Conservation and Promotion of Cultural Heritage-National Research Council (CNR-ICVBC), Firenze, Italy;

    Opifitio delle Pietre Dure (OPD). Firenze, Italy;

    Opifitio delle Pietre Dure (OPD). Firenze, Italy;

    National University of Art, Bucharest, Romania;

    Nello Carrara'Applied Physics Institute-National Research Council of Italy (CNR-IFAC), Firenze, Italy;

    National University of Art, Bucharest, Romania;

    Nello Carrara'Applied Physics Institute-National Research Council of Italy (CNR-IFAC), Firenze, Italy;

    Nello Carrara'Applied Physics Institute-National Research Council of Italy (CNR-IFAC), Firenze, Italy;

    Institute for the Conservation and Promotion of Cultural Heritage-National Research Council (CNR-ICVBC), Firenze, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Laser irradiation; UV effects; Pigments; Fresco wall paintings; Laser induced fluorescence; Cultural heritage;

    机译:激光照射紫外线效果;颜料;壁画壁画;激光诱导荧光;文化遗产;
  • 入库时间 2022-08-18 03:06:24

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