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Use of optical correlation techniques for characterizing scattering objects and media / Oleg V. Angelsky, Steen G. Hanson, Peter P. Maksimyak.

SPIE Digital Library eBooks Available online

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Format:
Book
Author/Creator:
Angelsky, Oleg V., author.
Hanson, Steen G., author.
Maksimyak, Peter P., author.
Contributor:
Society of Photo-Optical Instrumentation Engineers, publisher.
Series:
SPIE monograph ; PM71.
SPIE digital library
SPIE Press monograph ; PM71
Language:
English
Subjects (All):
Light--Scattering.
Light.
Optical data processing.
Optical measurements.
Genre:
Electronic books.
Physical Description:
1 online resource (viii, 162 pages) : illustrations.
Other Title:
Optical correlation techniques.
Place of Publication:
Bellingham, WA : SPIE Optical Engineering Press, 1999.
Bellingham, Wash., USA : SPIE Press, 2019.
System Details:
Mode of access: World Wide Web.
text file
Summary:
This monograph examines the possibilities for diagnostics of light-scattering objects and media by utilizing the properties of coherent optical radiation. Special emphasis is placed on diagnostics of rough surfaces. Ideas formulated in classical work on statistical radiophysics and optics have been adapted to diagnostic applications. The text includes unique techniques and unconventional methods aimed at obtaining the maximum information available.
Contents:
Preface
Introduction
Chapter 1. Random non-uniform media and fields: 1.1. Determinate objects and random non-uniform media; 1.2. Propagation of random waves in an unbounded uniform medium; 1.3. Transmission of a plane wave through a random phase screen; 1.4. Scattering of optical radiation by dispersive media; References
Chapter 2. Study of rough surfaces using light-scattering methods: 2.1. Scattering by a rough surface; 2.2. Determining roughness from scattering measurements; References
Chapter 3. Structure diagnostics of phase objects with small phase variance: 3.1. Infinitely extended screen approximation; 3.2. Correlation methods for structure diagnostics of RPO; 3.3. Measurement of the roughness element height distribution function of slightly rough surfaces; 3.4. Studies of optical crystals with refractive index inhomogeneities; 3.5. Diagnostics of slightly rough surfaces; References
Chapter 4. Stochastic approach to diagnostics of scattering objects: 4.1. Stochastic characteristics of objects and fields; 4.2. Diffraction on simple 1D phase structures; 4.3. Fractal classification; 4.4. The possibility for remote diagnostics of Koch fractals; 4.5. Diagnostics of random phase inhomogeneous objects; References
Chapter 5. Structure and dynamical diagnostics of disperse media: 5.1. Optical correlation methods for sizing and measuring the concentration of light-scattering particles; 5.2. Optical correlation systems for reducing diagnostic response time in disperse media; 5.3. Transformation of the longitudinal coherence function of a field propagating in a light-scattering medium; 5.4. Holographic methods for dynamical and structure diagnostics of light-scattering particles; References
Index.
Notes:
"SPIE Digital Library."--Website.
Includes bibliographical references and index.
Title from PDF title page (SPIE eBooks Website, viewed 2019-06-11).
Other Format:
Print version
ISBN:
9781510629936
OCLC:
1104953963
Access Restriction:
Restricted for use by site license.

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