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Ebook: Interference-optical Methods of Solid Mechanics

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27.01.2024
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This reference tutorial contains modern experimental approaches to analysis of strain-stress distribution based on interference-optical methods of registration of strain or displacement fields, including coherent-optical techniques (holographic interferometry, speckle photography, electronic digital speckle interferometry techniques) and photoelastic methods as well as the shadow optical method of caustic.

The book describes the theory, efficient scope of application in the every-day practice and the problems of further development of these techniques. Much attention is paid to new and promising advanced developments in the field of observation and computational methods for study of residual stress, determination of fracture mechanics parameters and material deformation characteristics.

The content corresponds to the course of lectures delivered by the author at the N.E. Bauman Moscow State Technical University.

It is intended for technical university students, research engineers and postgraduate students who are doing analysis of strain-stress state and strength of structural elements.




The field of complex photonic media is truly interdisciplinary, inevitably overarching multiple topics of physics, chemistry, nanotechnology, materials science, and engineering. In Tutorials in Complex Photonic Media, the editors bring together 19 essential chapters written by leading scientists in their respective fields. These tutorials cover the basic physical properties of complex photonic media and the underlying concepts that constitute breakthroughs in modern optics. Tutorials in Complex Photonic Media helps students, engineers, and scientists entering the field to become familiar with the interrelated aspects of the subject. It also serves well as a supplemental text in introductory and advanced courses on optical materials, nanotechnology, physical optics, or photonic metamaterials. The covered topics include: nanoplasmonics and nanophotonics, chiral media, negative index of refraction, random lasers, propagation of electromagnetic waves in scattering media, fundamental physics of photonic materials, organic photonic materials, photonic crystals, metamaterials, magneto-optics, optical vortexes, holography, and slow light
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