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Field of Research : Nanophotonics
Research Topic : electrostatics
Australian State/Territory : ACT
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Electrostatics and Electrodynamics (2)
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  • Funded Activity

    Discovery Projects - Grant ID: DP150103611

    Funder
    Australian Research Council
    Funding Amount
    $434,300.00
    Summary
    Enhanced interaction of electromagnetics and mechanics in structured media. This project will investigate the interaction between electromagnetic waves and mechanical motion in structured media. Enhancing this interaction will improve a number of modern technologies, such as nano-scaled motors, traps for biological samples and optical wrenches. Modern fabrication techniques will link the electromagnetic and mechanical properties of media, so that the electromagnetic forces will greatly increase, .... Enhanced interaction of electromagnetics and mechanics in structured media. This project will investigate the interaction between electromagnetic waves and mechanical motion in structured media. Enhancing this interaction will improve a number of modern technologies, such as nano-scaled motors, traps for biological samples and optical wrenches. Modern fabrication techniques will link the electromagnetic and mechanical properties of media, so that the electromagnetic forces will greatly increase, making such devices able to manipulate larger objects. Structured materials can also change their properties dynamically, enabling material properties to be altered in real time. This mechanism will form the basis of advanced tunable components to control waves at visible, infrared, terahertz and microwave wavelengths.
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    Funded Activity

    Discovery Projects - Grant ID: DP110100087

    Funder
    Australian Research Council
    Funding Amount
    $475,000.00
    Summary
    Functional metamaterials based on chiral structures. The project will develop a new class of metamaterials - artificial materials that twist light and synchronise multiple light sources. These structures will show intriguing physical properties with reduced absorption and external tunability, thus paving the way for novel optical technologies.
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    Showing 1-2 of 2 Funded Activites

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