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Model Simulates Atomic Processes in Nanomaterials

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CAMBRIDGE, Mass., March 12, 2007 -- Researchers from MIT, Georgia Institute of Technology and Ohio State University have developed a new computer modeling approach to study how materials behave under stress at the atomic level, offering insights that could help engineers design materials with an ideal balance between strength and resistance to failure. When designing materials, there is often a tradeoff between strength and ductility (resistance to breaking) -- properties that are critically important to their performance. This three-dimensional atomic simulation shows the absorption of a line defect by an existing twin...Read full article

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    Published: March 2007
    Glossary
    nano
    An SI prefix meaning one billionth (10-9). Nano can also be used to indicate the study of atoms, molecules and other structures and particles on the nanometer scale. Nano-optics (also referred to as nanophotonics), for example, is the study of how light and light-matter interactions behave on the nanometer scale. See nanophotonics.
    nanotechnology
    The use of atoms, molecules and molecular-scale structures to enhance existing technology and develop new materials and devices. The goal of this technology is to manipulate atomic and molecular particles to create devices that are thousands of times smaller and faster than those of the current microtechnologies.
    photonics
    The technology of generating and harnessing light and other forms of radiant energy whose quantum unit is the photon. The science includes light emission, transmission, deflection, amplification and detection by optical components and instruments, lasers and other light sources, fiber optics, electro-optical instrumentation, related hardware and electronics, and sophisticated systems. The range of applications of photonics extends from energy generation to detection to communications and...
    Basic Sciencecomputer modelingdefenseGeorgia Institute of Technologymaterial deformationMaterialsMITnanonanostructurenanotechnologyNews & FeaturesOhio State Universityphotonics

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