Handbook of Nanoscale Optics and Electronics

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Informationen zum Autor Gary Wiederrecht is the Group Leader of the Nanophotonics Group in the Center for Nanoscale Materials at Argonne National Laboratory. His research interests center on the photochemistry and photophysics of nanoparticles and periodic assemblies, hybrid nanostructures, photochemical energy conversion, and non-linear optical responses resulting from photoinduced charge separation. His experimental expertise is in the areas of ultrafast optical spectroscopy and scanning probe microscopy, including near-field scanning optical microscopy. He has received an R&D100 award, the Department of Energy Young Scientist Award, and the Presidential Early Career Award for Scientists and Engineers. He has authored or co-authored approximately 80 peer-reviewed research articles, and works collaboratively with scientists around the world. He enjoys traveling, nature, and spending time with his family. Chemist, Group Leader, Nanophotonics Group Argonne National Laboratory Chemistry Division, E161 9700 South Cass Avenue Argonne, IL 60439-4831 Klappentext With the increasing demand for smaller! faster! and more highly integrated optical and electronic devices! as well as extremely sensitive detectors for biomedical and environmental applications! a field called nano-optics or nano-photonics/electronics is emerging studying the many promising optical properties of nanostructures. Like nanotechnology itself! it is a rapidly evolving and changing field but because of strong research activity in optical communication and related devices! combined with the intensive work on nanotechnology! nano-optics is shaping up fast to be a field with a promising future. This book serves as a one-stop review of modern nano-optical/photonic and nano-electronic techniques! applications! and developments. Serves as a review of nano-optical/photonic and nano-electronic techniques, applications, and developments. This title provides overview of the field of Nano-optics/photonics and electronics, detailing practical examples of photonic technology. It discusses photonic systems and devices with mathematical rigor precise enough for design purposes. Inhaltsverzeichnis 1. Metallic nanostructures and plasmonics 2. Surface nanophotonics theory 3. Nanohole arrays 4. Photonic crystals - theory 5. Photonic crystals - experimental 6. Metamaterials 7. Thin film quantum wells 8. Surface enhanced Raman spectroscopy 9. Organic LEDs 10. Evanescent plasmonic sensors 11. Nanoscience for energy (quantum dot solar cells) 12. Optical holograghic data storage 13. Super-RENS optical near-field methods 14. Nanoelectronic devices 15. Spintronics 16. Molecular devices 17. Nanoscale transistors 18. Nano-CMOS...

Autorentext
Gary Wiederrecht is the Group Leader of the Nanophotonics Group in the Center for Nanoscale Materials at Argonne National Laboratory. His research interests center on the photochemistry and photophysics of nanoparticles and periodic assemblies, hybrid nanostructures, photochemical energy conversion, and non-linear optical responses resulting from photoinduced charge separation. His experimental expertise is in the areas of ultrafast optical spectroscopy and scanning probe microscopy, including near-field scanning optical microscopy. He has received an R&D100 award, the Department of Energy Young Scientist Award, and the Presidential Early Career Award for Scientists and Engineers. He has authored or co-authored approximately 80 peer-reviewed research articles, and works collaboratively with scientists around the world. He enjoys traveling, nature, and spending time with his family. Chemist, Group Leader, Nanophotonics GroupArgonne National Laboratory Chemistry Division, E1619700 South Cass AvenueArgonne, IL 60439-4831

Klappentext
With the increasing demand for smaller, faster, and more highly integrated optical and electronic devices, as well as extremely sensitive detectors for biomedical and environmental applications, a field called nano-optics or nano-photonics/electronics is emerging studying the many promising optical properties of nanostructures. Like nanotechnology itself, it is a rapidly evolving and changing field but because of strong research activity in optical communication and related devices, combined with the intensive work on nanotechnology, nano-optics is shaping up fast to be a field with a promising future. This book serves as a one-stop review of modern nano-optical/photonic and nano-electronic techniques, applications, and developments.


Zusammenfassung
Serves as a review of nano-optical/photonic and nano-electronic techniques, applications, and developments. This title provides overview of the field of Nano-optics/photonics and electronics, detailing practical examples of photonic technology. It discusses photonic systems and devices with mathematical rigor precise enough for design purposes.

Inhalt

  1. Metallic nanostructures and plasmonics
    1. Surface nanophotonics theory
    2. Nanohole arrays
    3. Photonic crystals - theory
    4. Photonic crystals - experimental
    5. Metamaterials
    6. Thin film quantum wells
    7. Surface enhanced Raman spectroscopy
    8. Organic LEDs
    9. Evanescent plasmonic sensors
    10. Nanoscience for energy (quantum dot solar cells)
    11. Optical holograghic data storage
    12. Super-RENS optical near-field methods
    13. Nanoelectronic devices
    14. Spintronics
    15. Molecular devices
    16. Nanoscale transistors
    17. Nano-CMOS
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Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09780123751782
    • Genre Technik
    • Editor Wiederrecht Gary
    • Sprache Englisch
    • Anzahl Seiten 560
    • Herausgeber Academic Press
    • Größe H229mm x B152mm x T25mm
    • Jahr 2009
    • EAN 9780123751782
    • Format Fester Einband
    • ISBN 978-0-12-375178-2
    • Veröffentlichung 04.11.2009
    • Titel Handbook of Nanoscale Optics and Electronics
    • Gewicht 1150g

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