DocumentCode
2073998
Title
Hybrid model of reflection of a light from diffuse scattering surfaces
Author
Ilinykh, S. ; Pokasov, V.
Volume
1
fYear
2001
fDate
26 Jun-3 Jul 2001
Firstpage
313
Abstract
A new approach to design models of processes of shaping a speckle-structure is represented. The numerical model, offered by us, shows shaping of a signal by a rough surface. The topography can be set by the optical behaviour of a material, inhomogeneity of coats, non single reflection, and shadowing of separate devices of a surface etc. As against traditional expedients of model operation of fields we offer a hybrid model of distribution of a wave-front taking into account features of a near-field region, and also those of Fresnel and Fraunhofer zones. This approach enables one to consider different cases of the attitude of a wavelength of sounding radiation and reference linear dimensions of a grain. The numerical model defines energy and phase characteristics of dispelled radiation that is important for adequate exposition of processes which shape speckle-structures. The model has shown good correspondence to model representations of an actual object
Keywords
Fraunhofer diffraction; Fresnel diffraction; light reflection; light scattering; rough surfaces; speckle; Fraunhofer diffraction; Fresnel diffraction; diffraction pattern; diffuse scattering surfaces; energy characteristics; hybrid light reflection model; laser speckle; light reflection; near-field region; nonsingle reflection; optical behaviour; phase characteristics; rough surfaces; speckle structure shaping; topography; Acoustic scattering; Light scattering; Numerical models; Optical reflection; Optical scattering; Optical surface waves; Process design; Rough surfaces; Surface roughness; Surface topography;
fLanguage
English
Publisher
ieee
Conference_Titel
Science and Technology, 2001. KORUS '01. Proceedings. The Fifth Russian-Korean International Symposium on
Conference_Location
Tomsk
Print_ISBN
0-7803-7008-2
Type
conf
DOI
10.1109/KORUS.2001.975135
Filename
975135
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