Detail publikace
Laser speckle correlation and surface roughness
PRAŽÁK, D. OHLÍDAL, M.
Anglický název
Laser speckle correlation and surface roughness
Typ
článek ve sborníku ve WoS nebo Scopus
Jazyk
en
Originální abstrakt
The topic of this paper is theoretical consideration on utilization of light scattering for measurement of surface roughness. The correlation of laser speckle fields generated by light of two different wavelengths, which illuminates investigated randomly rough surface is used. The solution of the problem within the framework of the scalar Kirchhoff theory of wave scattering from rough surfaces is presented. The Fresnel approximation in description of the scattered wave is used.
Anglický abstrakt
The topic of this paper is theoretical consideration on utilization of light scattering for measurement of surface roughness. The correlation of laser speckle fields generated by light of two different wavelengths, which illuminates investigated randomly rough surface is used. The solution of the problem within the framework of the scalar Kirchhoff theory of wave scattering from rough surfaces is presented. The Fresnel approximation in description of the scattered wave is used.
Klíčová slova anglicky
Laser light scattering, surface roughness, correlation of laser speckle fields
Rok RIV
2001
Vydáno
01.01.2001
Nakladatel
SPIE - The International Society for Optical Engineering
Místo
Bellingham, Washington, USA
ISBN
0-8194-4047-7
ISSN
0277-786X
Kniha
12th Czech-Slovak-Polish Optical Conference on Wave and Quantum Aspects of Contemporary Optics
Ročník
2001 (4356
Počet stran
8
BIBTEX
@inproceedings{BUT3158,
author="Dominik {Pražák} and Miloslav {Ohlídal},
title="Laser speckle correlation and surface roughness",
booktitle="12th Czech-Slovak-Polish Optical Conference on Wave and Quantum Aspects of Contemporary Optics",
year="2001",
volume="2001 (4356",
month="January",
publisher="SPIE - The International Society for Optical Engineering",
address="Bellingham, Washington, USA",
isbn="0-8194-4047-7",
issn="0277-786X"
}