Progress in Nanophotonics 1
Herausgegeben:Ohtsu, Motoichi
Progress in Nanophotonics 1
Herausgegeben:Ohtsu, Motoichi
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This book focuses on the recent progress in nanophotonics technology to be used to develop novel nano-optical devices, fabrication technology, and security systems. The topics covered are reviewed by seven leading scientists to provide a variable resource.
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This book focuses on the recent progress in nanophotonics technology to be used to develop novel nano-optical devices, fabrication technology, and security systems. The topics covered are reviewed by seven leading scientists to provide a variable resource.
Produktdetails
- Produktdetails
- Nano-Optics and Nanophotonics
- Verlag: Springer / Springer Berlin Heidelberg / Springer, Berlin
- Artikelnr. des Verlages: 978-3-642-26977-6
- Repr. d. Ausg. v. 2011
- Seitenzahl: 252
- Erscheinungstermin: 30. Oktober 2013
- Englisch
- Abmessung: 235mm x 155mm x 14mm
- Gewicht: 388g
- ISBN-13: 9783642269776
- ISBN-10: 364226977X
- Artikelnr.: 39301600
- Herstellerkennzeichnung
- Books on Demand GmbH
- In de Tarpen 42
- 22848 Norderstedt
- info@bod.de
- 040 53433511
- Nano-Optics and Nanophotonics
- Verlag: Springer / Springer Berlin Heidelberg / Springer, Berlin
- Artikelnr. des Verlages: 978-3-642-26977-6
- Repr. d. Ausg. v. 2011
- Seitenzahl: 252
- Erscheinungstermin: 30. Oktober 2013
- Englisch
- Abmessung: 235mm x 155mm x 14mm
- Gewicht: 388g
- ISBN-13: 9783642269776
- ISBN-10: 364226977X
- Artikelnr.: 39301600
- Herstellerkennzeichnung
- Books on Demand GmbH
- In de Tarpen 42
- 22848 Norderstedt
- info@bod.de
- 040 53433511
Motoiochi Ohtsu was appointed a Research Associate, an Associate professor, a Professor at the Tokyo Institute of Technology. From 1986 to 1987, while on leave from the Tokyo Institute of Technology, he joined the Crawford Hill Laboratory, AT&T Bell Laboratories, Holmdel, NJ. In 2004, he moved to the University of Tokyo as a professor. He has been the leader of the "Photon Control" project (1993-1998), the Kanagawa Academy of Science and Technology, Kanagawa, Japan), the "Localized Photon" project (1998-2003: ERATO,JST, Japan), "Terabyte Optical Storage Technology" project (2002-2006): NEDO, Japan), and "Near field optical lithography system" project (2004-2006: Ministry of Education, Japan),. He is concurrently the leader of the "Nanophotonics" team (2003-2009: SORST, JST, Japan), "Innovative Nanophotonics Components Development" project (2006-present: NEDO, Japan), and "Nanophotonics Total Expansion: Industry University Cooperation and "Human ResourceDevelopment" project (2006-present: NEDO, Japan).He has written over 417 papers and received 87 patents. He is the author, co-author, and editor of 55 books, including 22 in English.In 2000, he was appointed as the President of the Tokyo Chapter, LEOS, IEEE. From 2000, He is an executive director of the Japan Society of Applied Physics. His main field of interests is nanophotonics.He is a Fellow of the Optical Society of America, and a Fellow of the Japan Society of Applied Physics. He is also a Tandem Member of the Science Council of Japan. Awards: 14 prizes from academic institutions, including the Issac Koga Gold Medal of URSI in 1984, the Japan IBM Science Award in 1988, two awards from the Japan Society of Applied Physics in 1982 and 1990, the Inoue Science Foundation Award in 1999, the Japan Royal Medal with a Purple Ribbon from the Japanese Government in 2004, H. Inoue Award from JST in 2005, the Distinguished Achievement Award from the Institute of Electronics, Information and Communication Engineering of Japan in 2007, the Julius Springer Prize for Applied Physics in 2009.
Nanophotonics: Dressed photon technology for qualitatively innovative optical devices, fabrication, and systems.- DNA process for quantum dot chain.- Photon enhanced emission microscopy.- Nearfield spectroscopy of metallic nanostructure.- Self-organized fabrication of composite semiconductor quantum dots.- Metallic nanostructure.- Nanophotonic information systems with security.
Nanophotonics: Dressed photon technology for qualitatively innovative optical devices, fabrication, and systems.- DNA process for quantum dot chain.- Photon enhanced emission microscopy.- Nearfield spectroscopy of metallic nanostructure.- Self-organized fabrication of composite semiconductor quantum dots.- Metallic nanostructure.- Nanophotonic information systems with security.