Advanced Certificate in Plasmonic Nanophotonic Sensing
-- ViewingNowThe Advanced Certificate in Plasmonic Nanophotonic Sensing is a comprehensive course that provides learners with the essential skills needed to excel in the rapidly growing field of nanophotonics. This certificate program covers the fundamental principles of plasmonic nanophotonic sensing, including theoretical concepts, design methodologies, and practical applications.
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⢠Fundamentals of Plasmonics & Nanophotonics: This unit will cover the basics of plasmonics and nanophotonics, including surface plasmons, localized surface plasmons, and metamaterials.
⢠Advanced Nanofabrication Techniques: This unit will delve into advanced nanofabrication techniques for plasmonic and nanophotonic sensors, such as electron beam lithography, nanoimprint lithography, and focused ion beam milling.
⢠Sensing Principles & Applications: This unit will focus on the sensing principles behind plasmonic and nanophotonic devices, as well as their various applications in areas like biochemical sensing, environmental monitoring, and medical diagnostics.
⢠Plasmonic Nanoparticle Sensors: This unit will cover the design, fabrication, and characterization of plasmonic nanoparticle-based sensors, including their potential for ultrasensitive detection of biomolecules and chemical species.
⢠Nanophotonic Waveguide Sensors: This unit will delve into nanophotonic waveguide sensors, including photonic crystal waveguides, silicon nanowires, and plasmonic waveguides, for highly sensitive sensing applications.
⢠Optical Fiber Sensors: This unit will discuss the use of optical fiber sensors in plasmonics and nanophotonics, including their design, fabrication, and characterization for various sensing applications.
⢠Sensor Integration & System Design: This unit will cover the integration of plasmonic and nanophotonic sensors into functional systems, addressing issues like signal processing, data analysis, and system design.
⢠Advanced Topics in Plasmonic Nanophotonics: This unit will include advanced topics like nonlinear plasmonics, quantum plasmonics, and nanophotonic crystals, exploring the latest developments and trends in this field.
⢠Laboratory Practicum: This hands-on unit will allow students
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