Will help materials scientists and engineers fully comprehend optics and optical phenomena and utilize them for the design and fabrication of optical materials and devices. It explains the fundamentals legibly to nonspecialists and presents theoretical treatments for a variety of optical phenomena resulting from light-matter interactions.
Will help materials scientists and engineers fully comprehend optics and optical phenomena and utilize them for the design and fabrication of optical materials and devices. It explains the fundamentals legibly to nonspecialists and presents theoretical treatments for a variety of optical phenomena resulting from light-matter interactions.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Myeongkyu Lee, PhD, is currently a professor in the Department of Materials Science and Engineering at Yonsei University in Seoul, Korea. Formerly, he was a researcher at the National Institute for Materials Science, Japan, and a postdoctoral fellow in the Department of Electrical Engineering, Stanford University, California, where he received his PhD. Dr. Lee's research interests include dye-sensitized solar cell, nonlithographic thin film patterning for electronics, transparent electrodes, diffractive optics and holography, and laser materials processing. He is a member of several academic societies, including the Materials Research Society (MRS), the European Materials Research Society (E-MRS), and the Optical Society of America (OSA), and he is the former editor of Electronic Materials Letters (2013-2014). He is also the author of the book X-Ray Diffraction for Materials Research: From Fundamentals to Applications (Apple Academic Press).
Inhaltsangabe
1. Electromagnetic Waves 2. Reflection and Refraction 3. Superposition of Waves 4. Interference 5. Diffraction 6. Light Propagation in Anisotropic Media 7. Polarization 8. Thin Film Optics and Reflectance Control 9. Interference Lithography 10. Metal Plasmonics
1. Electromagnetic Waves 2. Reflection and Refraction 3. Superposition of Waves 4. Interference 5. Diffraction 6. Light Propagation in Anisotropic Media 7. Polarization 8. Thin Film Optics and Reflectance Control 9. Interference Lithography 10. Metal Plasmonics
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