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New Laser Brings Faster Internet

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High-speed Internet continues to evolve, making very quick work of downloading, streaming and communicating. But could it get faster? Researchers in California say yes. A new laser developed by a research group at the California Institute of Technology (Caltech) could eventually make possible an increase in the rate of data transmission in the optical fiber network — the backbone of the Internet. Originally, laser beams in optic fibers carried information in pulses of light; data signals were impressed on the beam by rapidly turning the laser on and off. The researchers are...Read full article

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    Published: February 2014
    Glossary
    bandwidth
    The range of frequencies over which a particular instrument is designed to function within specified limits. See also fiber bandwidth.
    frequency
    With reference to electromagnetic radiation, the number of crests of waves that pass a fixed point in a given unit of time, in light or other wave motion. Expressed in hertz or cycles per second.
    indium phosphide
    Indium phosphide (InP) is a compound semiconductor material composed of indium (In) and phosphorus (P). It belongs to the III-V group of semiconductors, where elements from groups III and V of the periodic table combine to form a variety of important semiconductor materials. Indium phosphide is known for its favorable electronic and optical properties, making it widely used in the fabrication of optoelectronic devices. Key features and properties of indium phosphide include: Bandgap: Indium...
    AmericasAmnon YarivArmy Research OfficebandwidthCaliforniaCalifornia Institute of TechnologyCaltechCommunicationsDefense Advanced Research Projects Agencyfiber opticsfrequencygallium arsenideIII-V semiconductorindium phosphideInternetNational Science Foundationoptical fiber networkOpticsResearch & Technologyspectral purityTech Pulsedistributed-feedback semiconductorS-DFBabsorption-free siliconspatial patterningMartin and Eileen SummerfieldLasers

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