Surface Plasmon Coupling

Fundamentals and Applications to Light-Emitting Devices

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Elsevier


Paru le : 2025-12-01



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Description
Surface Plasmon Coupling: Fundamentals and Applications to Light-Emitting Devices offers a thorough introduction to the essential principles of surface plasmon coupling and its significant role in modern optoelectronics. The book systematically explains key concepts, including the mechanisms behind surface plasmon coupling and its impact on improving both emission efficiency in light emitters and color conversion for display technologies. Addressing widespread misunderstandings—such as the differences between surface plasmon resonance and coupling—the text begins by clarifying foundational topics before progressing to practical applications. This structure gives readers a strong base and helps them confidently navigate the subject's complexities.Beyond the basics, the book stands out for its comprehensive coverage, blending theoretical frameworks with advanced developments and real-world case studies. It includes detailed methodologies and experimental techniques, making it a valuable resource for both researchers and practitioners. By integrating practical examples with robust discussions, the book not only reveals the broad scope of surface plasmon coupling applications but also equips readers to apply these concepts effectively in their work. - Offers a systematic explanation of the basic principles and fundamental characteristics of surface plasmon coupling - Provides practical examples of surface plasmon coupling applications such as light-emitting diodes and color-conversion devices - Discusses related near-field electromagnetic interactions for practical applications - Includes review questions and answers
Pages
300 pages
Collection
n.c
Parution
2025-12-01
Marque
Elsevier
EAN papier
9780443452086
EAN EPUB SANS DRM
9780443452093

Prix
205,71 €

Chih-Chung Yang is Ming Nien Chair Professor and Distinguished Professor in the Department of Electrical Engineering at National Taiwan University, Taiwan. His research interests have spanned the areas of nitride and oxide semiconductors, MOCVD and MBE growth, light-emitting diodes, nanophotonics and optoelectronics, plasmonics, and biophotonics. He is a fellow of Optica and SPIE.

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