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Wien : Verlag Mayer. Laser Cleaning in Conservation. Oxford : Butterworth-Heinemann. In: Brown, R. Lasers in the Preservation of Cultural Heritage.

Laser Chemistry, Special Issue. New York : Hindawi. Laser Cleaning II. Singapore : World Scientific. Springer Series in Materials Science , In contrast to inorganic materials such as stone , laser irradiation of bio-organic materials such as paper may lead to photochemical and photothermal degradation. Kautek et al. Applied Surface Science , — — Journal of Cultural Heritage , 1: S — 4. Applied Physics A , 71 1 : 87 — Applied Physics A , 75 6 : — 6.

Journal of Cultural Heritage , 4: s — 7. Applied Physics A , Proceedings of SPIE , — 6. Optica Applicata , 34 1 : — Springer Proceedings in Physics , 35 — Applied Surface Science , 1—4 : — Laser Cleaning Methodologies of Polymer Substrates.

In: Lippert, T. Polymers and Light. Berlin Heidelberg Germany : Springer-Verlag , 1 — Laser-Induced Alteration of Contaminated Papers. Applied Physics A , 79 4—6 : — 4. Characterization of Laser-Treated Paper. Applied Physics A , 79 2 : — 6. Applied Surface Science , 23 : — In: Radvan, R. The Unknown Face of the Artwork. Applied Physics A , — 9. Journal of Cultural Heritage. Applied Surface Science , 53 — Laser Cleaning of Art. Laser-Surface Interactions, Springer Netherlands: 87— A laser wavelength in the visible range such as the second harmonic of a Nd:YAG laser at nm minimises the interaction with bio-organic materials, while absorption by contaminants may be sufficient for removal Kolar et al.

Proceedings of SPIE , In: Schreiner, M. The situation may become more complicated when pigments have to be preserved Kautek et al.

Springer Proceedings in Physics , — Springer Proceedings in Physics , — 6. In: Engel, P. Effect of Laser Radiation on 19th Century Paper. Laser Yellowing: Myth or Reality? Journal of Cultural Heritage , 4 Supplement 1 : — It occurs mainly with infrared but also with ultraviolet radiation, while remedial action can be taken by choosing visible wavelengths Kolar et al. Applied Surface Science , 19 : — Applied Physics A , 81 5 : — Applied Physics A , 92 1 : — Cleaning of artificially soiled paper using nanosecond, picosecond and femtosecond laser pulses.

Applied Physics A , 2 : — 6. To date, a rather ambiguous issue still remains: the mechanistic correlation between cleaning efficiency and the fluence and pulse number while avoiding any damage to the paper substrate. Therefore, this study was concerned with the development of a quantitative radiation dose model which provides a strategy for estimating optimum cleaning efficiency with a minimum of substrate radiation load. In order to base this on a broad set of practice, paper conservation experts selected relevant samples including cotton linters paper, ground wood paper, and original China papers together with a well-proven model graphite contaminant.

Four historical paper types without sizing and with widely differing composition were selected as substrates for this study by international experts in paper conservation. Cotton linters cellulose paper ca. Historical Paper Samples Selected and Provided. Cotton paper is produced from cotton linters or cotton from used cloth rags. It is superior in both strength and durability to ground wood cellulose paper, which contains lignin and acids. Two historical Chinese cellulose papers with foxing stains exhibiting wide inter-fibre spaces dated before , a white Fig.

Historical China Papers Selected and Provided. Please login to set citation alerts. Equations displayed with MathJax. Right click equation to reveal menu options. Home To Top Next Article. Select as filters. All Rights Reserved. Privacy Terms of Use. Password Forgot your password? Remember me on this computer. Login Cancel. OpenAthens Login.

Lasers In The Conservation Of Artworks VIII - Used Books

Strzelec, A. Laser cleaning of iron: Surface appearance and re-corrosion of model systems C. Reversion of darkened red lead-containing wall paintings by means of cw-laser irradiation:In situ tests and first application S. Aze, J. Vallet, V.

Journal of Optical Technology

Comparative study on the irradiation methods against fungal colonization case study S. Abd Abd El Rahim. Targowski, E. Kwiatkowska, M. Sylwestrzak, J. Marczak, W.

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Skrzeczanowski, R. Ostrowski, E.

Database of complex paint spectra decomposed by principal component analysis, for identification of artwork colours Zs. Study of matrix effect in the analysis of pigments mixtures using laser induced plasma spectroscopy M. Mateo, T. Ctvrtnickova, A. Pomerania Laboratory—A solution for the cultural heritage research and conservation A.

Iwulska, I. Jendrzejewski, M. Sawczak, G. Panzner, U. Klotzbach, E. Beyer, G. Torosyan, A. Study of the effect of relative humidity on the identification conditions of paper soiling by means of the NIR technique M. Rabczuk, A.