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Piezoelectric Effect Controlled in QDs

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MONTREAL, Sept. 9, 2010 — The generation of an electric field by the compression and expansion of solid materials is known as the piezoelectric effect, and it has a wide range of applications ranging from everyday items such as watches, motion sensors and precise positioning systems. Researchers at McGill University's Department of Chemistry have now discovered how to control this effect in nanoscale semiconductors called "quantum dots," enabling the development of incredibly tiny new products. A laser in Dr. Kambhampati's lab used to shine light on quantum dots. (Image: Dept. of Chemistry, McGill University) ...Read full article

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    Published: September 2010
    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.
    quantum dots
    A quantum dot is a nanoscale semiconductor structure, typically composed of materials like cadmium selenide or indium arsenide, that exhibits unique quantum mechanical properties. These properties arise from the confinement of electrons within the dot, leading to discrete energy levels, or "quantization" of energy, similar to the behavior of individual atoms or molecules. Quantum dots have a size on the order of a few nanometers and can emit or absorb photons (light) with precise wavelengths,...
    AmericasBasic Sciencecadmium selenideCanadaDNA double-helixelectric fieldenergynanonanoelectric devicesnanoscale semiconductorsPatanjali KambhampatipiezoelectricPooja Tyagiquantum dotsResearch & TechnologySensors & DetectorsLasers

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