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Nanotweezers Increase Velocity of Particle Transport

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Nanotweezers that exploit plasmonics, heat and an electrical field flow overcome previous limitations caused by weak convection properties. The nanotweezer system uses a nanoantenna to concentrate and absorb light, creating plasmonic hotspots, which make it possible to manipulate nanoscale objects suspended in a fluid. Previous research had shown that convection using a single plasmonic nanoantenna was too weak to result in net transport of suspended particles. Researchers at Purdue University have increased the velocity of particle transport to more than 10 μ/s — two...Read full article

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    Published: November 2015
    Glossary
    plasmonics
    Plasmonics is a field of science and technology that focuses on the interaction between electromagnetic radiation and free electrons in a metal or semiconductor at the nanoscale. Specifically, plasmonics deals with the collective oscillations of these free electrons, known as surface plasmons, which can confine and manipulate light on the nanometer scale. Surface plasmons are formed when incident photons couple with the conduction electrons at the interface between a metal or semiconductor...
    optical tweezers
    Optical tweezers refer to a scientific instrument that uses the pressure of laser light to trap and manipulate microscopic objects, such as particles or biological cells, in three dimensions. This technique relies on the momentum transfer of photons from the laser beam to the trapped objects, creating a stable trapping potential. Optical tweezers are widely used in physics, biology, and nanotechnology for studying and manipulating tiny structures at the microscale and nanoscale levels. Key...
    Research & TechnologyIndianaPurdue UniversitynanotweezersplasmonicsDisplaysAmericasoptical tweezersquantum computingTech Pulse

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