Progress in Nano-Electro-Optics VII: Chemical, Biological, and Nanophotonic Technologies for Nano-Optical Devices and Systems: Springer Series in Optical Sciences, cartea 155
Editat de Motoichi Ohtsuen Limba Engleză Paperback – 14 mar 2012
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Paperback (1) | 634.00 lei 6-8 săpt. | |
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Specificații
ISBN-13: 9783642261602
ISBN-10: 3642261604
Pagini: 164
Ilustrații: XIV, 149 p.
Dimensiuni: 155 x 235 x 9 mm
Greutate: 0.24 kg
Ediția:2010
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Springer Series in Optical Sciences
Locul publicării:Berlin, Heidelberg, Germany
ISBN-10: 3642261604
Pagini: 164
Ilustrații: XIV, 149 p.
Dimensiuni: 155 x 235 x 9 mm
Greutate: 0.24 kg
Ediția:2010
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Springer Series in Optical Sciences
Locul publicării:Berlin, Heidelberg, Germany
Public țintă
ResearchCuprins
Photo-Induced Phase Transition in RbMnFe Prussian Blue Analog-Based Magnet.- Photoinduced Energy Transfer in Artificial Photosynthetic Systems.- Electro-Magneto-Optics in Polarity-Controlled Quantum Structures on ZnO.- Nonadiabatic Near-Field Optical Polishing and Energy Transfers in Spherical Quantum Dots.- Shape-Engineered Nanostructures for Polarization Control in Optical Near- and Far-Fields.
Notă biografică
Dr. M. Ohtsu is currently a professor of The University of Tokyo. He is also a leader of Innovative Nanophotonics Component Development Project, New Energy and Industrial Technology Development Organization. He has been a president of IEEE LEOS Japan Chapter. He has also been a member of the board of directors, Japan Society of Applied Physics. He is a fellow of Optical Society of America. He is a member of editorial board, Springer Series in Optical Sciences.
Textul de pe ultima copertă
This book focuses on chemical and nanophotonic technology to be used to develop novel nano-optical devices and systems. It begins with temperature- and photo-induced phase transition of ferromagnetic materials. Further topics include: energy transfer in artificial photosynthesis, homoepitaxial multiple quantum wells in ZnO, near-field photochemical etching and nanophotonic devices based on a nonadiabatic process and optical near-field energy transfer, respectively and polarization control in the optical near-field for optical information security. Taken as a whole, this overview will be a valuable resource for engineers and scientists working in the field of nano-electro-optics.
Caracteristici
Presents the current state of the art in nanooptics and near field techniques Displays the applications of nanooptics in chemical, biological, and nanosciences useful reference to researchers and graduate students Includes supplementary material: sn.pub/extras