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    1. Naturvetenskap och teknik
    2. Teknik och industri
    3. Maskinteknik och material

    Photonic Crystal, Plasmonic, and Hybrid Interfaces

    Fundamentals and Applications of Photo-plasmonic Modalities

    AvSeemesh Bhaskar,Shivakiran Bhaktha B. N

    Häftad, Engelska, 2027

    Del i serien Nanophotonics

    2 499 kr

    Kommande

    Beskrivning

    Photonic Crystal, Plasmonic, and Hybrid Interfaces: Fundamentals and Applications of Photo-plasmonic Modalities explores the field where photonic crystals and plasmonic materials meet, bringing together concepts from optics, electromagnetism, chemical physics, and materials science to explain light-matter interactions at photo-plasmonic modalities. Initial chapters discuss basic principles, such as the physics of photonic crystals and design methods. Then, the book moves on to discuss how to create photonic crystal structures with specific optical properties for various applications and explores the fundamentals and latest developments in plasmonic technologies and their unique optical properties.

    Finally, it covers the many applications of combining photonic crystals and plasmonic materials, including practical examples and case studies to help readers understand how theoretical concepts are applied in real life. This will be a valuable resource to academic and industrial researchers, graduate students, engineers, and professionals who need comprehensive information on photonics and plasmonics, and both theory and practical knowledge on hybrid interfaces.

    • Features theoretical principles and practical applications, providing in-depth insights into fundamental concepts while addressing real-world challenges
    • Covers emerging trends, design strategies, fabrication techniques, characterization methods, and applications in photonics and plasmonics at the interface of photonic crystal modalities
    • Includes practical examples and case studies that demonstrate applications of theoretical concepts

    Produktinformation

    • Utgivningsdatum:2027-03-01
    • Mått:191 x 235 x undefined mm
    • Format:Häftad
    • Språk:Engelska
    • Serie:Nanophotonics
    • Antal sidor:540
    • Förlag:Elsevier Science
    • ISBN:9780443365461

    Utforska kategorier

    • Maskinteknik och material inom Naturvetenskap och teknik
    • Övrig teknik och tillämpad vetenskap inom Naturvetenskap och teknik

    Mer om författaren

    Dr. Seemesh Bhaskar is a Carl R. Woese Institute for Genomic Biology (IGB) fellow at the University of Illinois at Urbana-Champaign (UIUC), USA. He completed his Ph.D. from STAR Lab, Central Research Instruments Facility (CRIF), SSSIHL, and postdoctoral studies from NanoStructured Materials (NSM) group, Indian Institute of Technology (IIT), Bombay. He has pursued research internships at SASTRA University and the Indian Institute of Science, Bangalore, as part of the DST-Inspire program. He is the recipient of the prestigious DST-Inspire scholarship & fellowship, AWSAR, K. V. Rao Scientific Society (KVRSS), Young Achiever, M.Sc. Chemistry Gold medal and All-rounder Gold medal awards. His research work focuses on building effective nano-engineering protocols for photo-plasmonic biosensing at advanced interfaces comprising sustainable bioinspired polymeric hybrids.Shivakiran Bhaktha B. N. received his Master of Science (Physics) from Sri Sathya Sai Institute of Higher Learning, India, in 2003, and his Ph.D. from the School of Physics, University of Hyderabad, India, in 2006. As part of his post-doctoral fellowship, he has visited various laboratories including Université des Sciences et Technologies de Lille, France; CNR-IFN, CSMFO Lab., Italy; LPMC-CNRS, France; and TIFR, India. Some of his primary research interests include random lasers, photonic crystals, plasmonics, glass photonics, optofluidics, micro-resonators, nonlinear optics, photonic devices, and sensors. He is currently an Associate Professor in the Department of Physics at the Indian Institute of Technology Kharagpur, India.Maurizio Ferrari received his Doctorate in Physics from Trento University, Italy, in 1979/1980. He worked at the Laboratoire de Physico-Chimie des Matériaux Luminescents, France, until 1989 before joining the CNR in Trento. He served as Director of Research at the Institute for Photonics and Nanotechnologies, CNR, heading the CSMFO Lab and IFN-CNR Trento unit until December 31, 2021. Since July 1, 2022, he has been a Senior Associate at CNR-IFN, Italy.He has been Editor of Optical Materials (2013-2023) and Associate Editor of Optical Engineering (2010-2021) and Journal of Non-Crystalline Solids (2011-2023). Currently, he is an Editorial Board member of Ceramics and Associate Editor of Ceramics International. His research in Glass Photonics covers the properties, structure, and processing of glasses, crystals, and films for optical applications; energy transfer; optical and spectroscopic properties; integrated optics; nanocomposite materials; and confined structures such as photonic crystals, waveguides, microcavities, and microresonators. Apparao M. Rao joined the Department of Physics and Astronomy at Clemson University, USA, in 2000. He currently serves as the Robert A. Bowen Endowed Professor of Physics in the Department of Physics and Astronomy at Clemson University and the founding Director of the Clemson Nanomaterials Institute (CNI). He developed Raman spectroscopy into a versatile tool for characterizing carbon nanomaterials. He pioneered the liquid-injection-based synthesis methods for carbon nanotubes. Because of his sustained research in nanomaterials and for building competitiveness in the State of South Carolina, the Governor of South Carolina, the Honorable Nikki Haley, conferred on him in 2014 the State’s highest honor - the Governor’s Award for excellence in scientific research. He is a Fellow of the American Physical Society, American Association for Advancement of Science, the Material Research Society, and the National Academy of Inventors. Rao is the first and only faculty member in the State of South Carolina to earn Fellow status in the MRS. He is an adjunct professor at the SSSIHL, India, where he initiated a nanomaterials program, and he continues to direct research projects for M.S. and Ph.D. students at SSSIHL. He is also the Brahm Prakash Visiting Chair Professor at the Indian Institute of Science, Bengaluru, India.Brian T. Cunningham completed his Ph.D. at the University of Illinois at Urbana-Champaign, USA, and was a postdoctorate scientist at Sandia National Laboratory, USA. He is currently a faculty member in the Department of Electrical and Computer Engineering and the Department of Bioengineering at the University of Illinois at Urbana-Champaign. He joined the university following a 15-year career in industry. His technical focus is the utilization of photonics for biosensing in applications that include life science research, diagnostics, environmental monitoring, and pharmaceutical screening. Dr. Cunningham serves as the Director of the Center for Genomic Diagnostics at the Woese Institute for Genomic Biology, and as a Program Leader for the Cancer Center at Illinois, focusing on Cancer Measurement Technology and Data Science. He has received several honors, including the Michael S. Feld Biophotonics Award, the Everitt Award for Teaching Excellence, the George Anner Award for Excellence in Undergraduate Teaching, the IEEE Sensors Council Technical Achievement Award, Medical Scholars Program Outstanding Advisor Award, and the University of Illinois at Urbana-Champaign’s Bronze Tablet.

    Innehållsförteckning

    • Section I: Advances at Photonic Crystal Interfaces1. Introduction to Photonic Crystal Substrates2. Insights from Simulation and Theoretical Studies Associated with Photonic Crystal Substrates3. Design Strategies and Fabrication Methods for Photonic Crystal Substrates4. Classification and Characterization of Photonic Crystal and Related Interfaces5. Application of Photonic Crystals for Integrated Nanoscale Optical Devices6. Application of Photonic Crystal Interfaces in Enhanced SpectroscopySection II: Advances at Plasmonic Interfaces7. Introduction Plasmonic Substrates8. Insights from Simulation and Theoretical Studies Associated with Plasmonic Substrates9. Design Strategies, Fabrication Methods, and Characterization of Plasmonic Substrates10. Application of Plasmonic Nanomaterials: Insights from LSPR11. Application of Plasmonic Interfaces: Insights from SPPs12. Application of Hybrid Plasmonic Interfaces: Insights from the Synergy of LSPR and SPRSection III: Photo-Plasmonics: Advances at Photonic Crystal and Plasmonic Hybrid Interfaces13. Introduction Photo-Plasmonic Interfaces14. Insights from Simulation and Theoretical Studies Associated with Photonic Crystal and Plasmonic Hybrid Interfaces15. Design Strategies, Fabrication Methods, and Characterization of Photonic Crystal and Plasmonic Hybrid Interfaces16. Application of Hybrid Photo-Plasmonic Interfaces: Insights from the Synergy of LSPR and Photonic Crystal Modes17. Application of Hybrid Photo-Plasmonic Interfaces: Insights from the Synergy of SPPs and Photonic Crystal Modes18. Application of Hybrid Photo-Plasmonic Interfaces: Insights from the Synergy of LSPR, SPPs, and Photonic Crystal ModesSection IV: Future Scope and Conclusions19. Future Scope and Perspectives of Photo-Plasmonic Interfaces20. Next-Gen Photo-Plasmonic Interfaces: Challenges and Concluding Remarks