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Extra info for Non-destructive Micro Analysis of Cultural Heritage Materials, Volume 42 (Comprehensive Analytical Chemistry)
H. Andersen, Proceedings of the International Workshop on Ion-Beam Analysis in the Arts and Archaeology, Pont-A-Mousson, Abbaye des Premontre´s, France, February 18 –20, 1985—Editorial, Nucl. Instr. Meth. Phys. , B14 (1986) 1. E. Ciliberto and G. ), Modern Analytical Methods in Art and Archaeology, Chemical Analysis Series, Vol. 155. Wiley, Chichester, 2000. M. Pollard and C. Heron, Archaeological Chemistry. Royal Society of Chemistry, London, UK, 1996. C. A. ), Radiation in Art and Archaeometry.
Films can be utilized in the X-ray, UV, visible and near-infrared bands. Electro-optic devices rely on the photoelectric effect. The photon images, which have been focused onto the photosensitive surface, are converted by a vacuum tube or by a solid-state sensing array to electron images. These electronic images are reconverted to visible images. 1 Photographic materials The basis of common photography is the decomposition of the silver halides AgCl, AgBr and AgI by photons of appropriate energy to metallic silver.
All these effects and the penetration of IR radiation into the surface of many objects can contribute to the often observed blurring of the IR images. 3 Filters In this section the various types of filtering devices for the infrared, ultraviolet and X-ray region are discussed. For the photographic and electronic recording of invisible object states, filters must be applied between object and recording device since most of the latter are sensitive to unwanted spectral regions, in 26 UV-, IR- and X-ray imaging order to avoid a superposition of the various images.