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MICROPHOTONICS



This paper presents an overview of our study on the subject “Microphotonics” which is related with optical science and also behaves as one of the technologies used in “Wireless systems”. “Microphotonics” has also proven to be one of the successors to the field of electronics in this 21st century o the third millennium.

“Photonics” has revolutionized communications and holds similar potential for computing, sensing and imaging applications. . The Photon Belt has reasonable probability of occurrence, judging by the ongoing innovations in Microphotonics.

In this paper we are going to examine the introduction to our topic, its vision and evolution. Along with the evolution we are also going to see the great contribution of our scientists to this budding field.

The paper also includes the applications of the field in the technical as well as medical world. Different devices using the Microphotonics technology are also included in the paper

Materials

Micro Photonics offers a wealth of knowledge and experience in the materials science applications. Choose from a variety of techniques to enhance your research efforts.

Micro-CT Imaging

Internal Feature Characterization. Through the use of non-destructive 3D micro-CT imaging a variety of materials properties can be determined. Our CT Analyzer program calculates volumetric parameters such as Total Volume, Object Volume, Percent Volume, and Surface Area-to-Volume Ratio as well as more advance outputs such as Porosity, Pore Size Distribution, Object Thickness, Object Separation, Anisotropy, and more.
3D Modeling . Three-dimensional models can be created from micro-CT data for further analysis. Output files can be rendered for importation into finite element analysis programs.
Learn more about our Micro-CTs >>

Digital X-ray Imaging

Image Analysis & Screening. A wide range of digital imaging options are available from Micro Photonics. Fully enclosed FDA rated X-ray cabinet systems are ideal for non-destructive testing and screening.
Learn more about our Digital X-ray Imagers >>

X-ray Diffraction

Crystal structure. Through the use of Single Crystal diffraction, the structure for small molecules and proteins can be determined. STOE’s advanced systems easily handle twinned and modulated structures.
Characterization. A wide range of systems are available to characterize powders, solids, liquid crystals, and polymers using powder diffraction and SAXS techniques. A combination SAXS-Calorimeter instrument combines structure analysis with DSC Calorimetry.