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Visual information for the identification of nonrigid motion. [PDF]
Todd JT.
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Automatic Segmentation and Recognition of the Microstructure of High-Strength Low-Alloy Steel. [PDF]
Wang L +7 more
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Tailoring fully biobased optical adhesives <i>via</i> hydrogen-bonding modulation.
Nelson BR +7 more
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Science, 1991
The current state of materials development in nonlinear optics is summarized, and the promise of these materials is critically evaluated. Properties and important materials constants of current commercial materials and of new, promising, inorganic and organic molecular and polymeric materials with potential in second- and third-order nonlinear optical ...
ITOH HIROYUKI +3 more
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The current state of materials development in nonlinear optics is summarized, and the promise of these materials is critically evaluated. Properties and important materials constants of current commercial materials and of new, promising, inorganic and organic molecular and polymeric materials with potential in second- and third-order nonlinear optical ...
ITOH HIROYUKI +3 more
+10 more sources
Science, 1987
Optical technologies are becoming increasingly important in areas that were traditionally the domain of electronics. This trend is likely to continue into the foreseeable future with optics and electronics being integral, mutually compatible components of systems for consumer markets, industry, and defense. The basis of this progress is the development
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Optical technologies are becoming increasingly important in areas that were traditionally the domain of electronics. This trend is likely to continue into the foreseeable future with optics and electronics being integral, mutually compatible components of systems for consumer markets, industry, and defense. The basis of this progress is the development
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Optical properties of materials
2005In this article, the optical properties of macroscopic materials are described, basing only on classical arguments. Starting from Maxwell’s equations in a medium, the propagation of electromagnetic (em) waves in isotropic, linear, and homogeneous materials is treated.
GUIZZETTI, GIORGIO, PATRINI, MADDALENA
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Applied Optics, 1972
There are eras in research when days are filled with excitement because unique materials are being produced and researchers "think what nobody else has thought" (Albert von Szent Gyorgyi). Such were the periods when many new optical glasses emerged from the laboratories of the Eastman Kodak Company and when the hot pressing technology was applied to ...
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There are eras in research when days are filled with excitement because unique materials are being produced and researchers "think what nobody else has thought" (Albert von Szent Gyorgyi). Such were the periods when many new optical glasses emerged from the laboratories of the Eastman Kodak Company and when the hot pressing technology was applied to ...
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Hybrid materials for optics and photonics
Chemical Society Reviews, 2011The interest in organic-inorganic hybrids as materials for optics and photonics started more than 25 years ago and since then has known a continuous and strong growth. The high versatility of sol-gel processing offers a wide range of possibilities to design tailor-made materials in terms of structure, texture, functionality, properties and shape ...
BENEDICTE LEBEAU, INNOCENZI, Plinio
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Advanced Materials
Abstract Optical materials primarily refer to transparent insulators and semiconductors for guiding, diffracting, and nonlinearly‐generating light at photon energies below the electronic bandgaps. This work proposes that a solid can be equally lossless, above the fundamental bandgap, in an energy interval dubbed the hypergap, when the
Xiaolei Hu +6 more
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Abstract Optical materials primarily refer to transparent insulators and semiconductors for guiding, diffracting, and nonlinearly‐generating light at photon energies below the electronic bandgaps. This work proposes that a solid can be equally lossless, above the fundamental bandgap, in an energy interval dubbed the hypergap, when the
Xiaolei Hu +6 more
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Optical materials for information optics
Optical Engineering, 1992We explore current technology and research in the field of optic materials properties for information optics, conducted at the S. I. Vavilov State Optical Institute, which is the largest such institute in the continent.
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