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The Nanoscale Optical Properties of Complex Nanostructures
Details
Nominated as an outstanding Ph.D. thesis by Vanderbilt University, USA
Illustrates the innovative use of a combination of distinct techniques to better observe nanoscale optical phenomena
Brings together theoretical and experimental perspectives, as well as quantum-mechanical and semiclassical frameworks
Offers insights into the design of custom nanostructures
Nominated as an outstanding Ph.D. thesis by Vanderbilt University, USA Illustrates the innovative use of a combination of distinct techniques to better observe nanoscale optical phenomena? Brings together theoretical and experimental perspectives, as well as quantum-mechanical and semiclassical frameworks Offers insights into the design of custom nanostructures
Autorentext
Dr. Jordan A. Hachtel received a Ph.D. in Physics from Vanderbilt University in 2016, and is now a postdoctoral researcher at Oak Ridge National Laboratory.
Zusammenfassung
Nominated as an outstanding Ph.D. thesis by Vanderbilt University, USA
Illustrates the innovative use of a combination of distinct techniques to better observe nanoscale optical phenomena
Brings together theoretical and experimental perspectives, as well as quantum-mechanical and semiclassical frameworks
Offers insights into the design of custom nanostructures
Inhalt
Chap1: Introduction.- Chap2: Tools and Techniques.- Chap3: Extracting Interface Absorption Effects from First Principles.- Chap4: Advanced Electron Microscopy for Complex Nanotechnology.- Chap5: Probing Plasmons in Three Dimensions.- Chap6: The Plasmonic Response of Archimedean Spirals.- Chap7: Future Directions and Conclusion.- Appendices: A - C.- Curriculum Vitae.
Weitere Informationen
- Allgemeine Informationen
- Sprache Englisch
- Anzahl Seiten 148
- Herausgeber Springer International Publishing
- Gewicht 236g
- Untertitel Springer Theses
- Autor Jordan A. Hachtel
- Titel The Nanoscale Optical Properties of Complex Nanostructures
- Veröffentlichung 04.09.2018
- ISBN 3319889117
- Format Kartonierter Einband
- EAN 9783319889115
- Jahr 2018
- Größe H235mm x B155mm x T9mm
- Lesemotiv Verstehen
- Auflage Softcover reprint of the original 1st edition 2018
- GTIN 09783319889115