Executive Development Programme in Plasmonic Nanophotonic Antennas: High-Performance Technology
-- ViewingNowThe Executive Development Programme in Plasmonic Nanophotonic Antennas: High-Performance Technology certificate course is a comprehensive program designed to equip learners with essential skills in nanophotonics and plasmonic antennas. This course is vital in today's technology-driven world, where high-performance technology is in high demand across various industries, from telecommunications to healthcare and renewable energy.
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⢠Fundamentals of Plasmonic Nanophotonics: Understanding the basics of plasmonic nanophotonics, including surface plasmons, localized surface plasmons, and propagating surface plasmons.
⢠Plasmonic Nanoparticle Design and Fabrication: Learning the methods for designing and fabricating plasmonic nanoparticles, including lithography, etching, and self-assembly techniques.
⢠Nanoantenna Design and Optimization: Exploring the principles of nanoantenna design and optimization, focusing on high-performance technology for various applications.
⢠Plasmonic Nanophotonic Antennas for Sensing: Understanding the applications of plasmonic nanophotonic antennas for sensing, including biosensing, chemical sensing, and gas sensing.
⢠Plasmonic Nanophotonic Antennas for Energy Harvesting: Learning about the use of plasmonic nanophotonic antennas for energy harvesting, including solar cells and thermophotovoltaics.
⢠Plasmonic Nanophotonic Antennas for Communication: Exploring the use of plasmonic nanophotonic antennas for communication, including near-field communication and plasmonic waveguides.
⢠Plasmonic Nanophotonic Antennas for Imaging: Understanding the use of plasmonic nanophotonic antennas for imaging, including super-resolution imaging and optical trapping.
⢠Simulation and Modeling of Plasmonic Nanophotonic Antennas: Learning the methods for simulating and modeling plasmonic nanophotonic antennas, including finite-difference time-domain (FDTD) and finite-element method (FEM) techniques.
⢠Experimental Characterization of Plasmonic Nanophotonic Antennas:
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