Global Certificate in Plasmonics Device Design
-- ViewingNowThe Global Certificate in Plasmonics Device Design is a comprehensive course that equips learners with the essential skills needed to design and develop plasmonic devices. This certification program highlights the importance of plasmonics, an emerging field with significant implications for various industries, including telecommunications, medicine, and renewable energy.
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⢠Introduction to Plasmonics: Fundamentals of plasmons, surface plasmons, and localized surface plasmons. Properties and behavior of metal-dielectric interfaces.
⢠Plasmonic Materials: Overview of materials used in plasmonics, including metals, dielectrics, and 2D materials. Optical properties, losses, and dispersion characteristics.
⢠Plasmonic Devices: Basic building blocks and device architectures for plasmonic systems. Nanoparticle arrays, nanowires, nanostructures, and metamaterials.
⢠Nanofabrication Techniques: Lithography, etching, and deposition methods for creating plasmonic structures. Top-down and bottom-up approaches, and their advantages and limitations.
⢠Plasmonic Waveguides and Resonators: Design, simulation, and fabrication of plasmonic waveguides and resonators. Mode analysis, dispersion, and field confinement.
⢠Plasmonic Sensing and Spectroscopy: Principles and applications of plasmonic sensing and spectroscopy techniques. Surface-enhanced Raman scattering (SERS), fluorescence enhancement, and biosensing.
⢠Nonlinear Plasmonics: Nonlinear optical processes in plasmonic systems. High-harmonic generation, second and third harmonic generation, and four-wave mixing.
⢠Plasmonic Circuitry and Integration: Designing plasmonic circuits and integrating them with existing photonic and electronic systems. Hybrid plasmonic-photonic structures and plasmonic waveguide couplers.
⢠Computational Tools for Plasmonics: Numerical methods and simulation tools for modeling plasmonic devices and systems. Finite-difference time-domain (FDTD), finite-element method (FEM), and boundary element method (BEM).
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