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Kato Group

Kato Group, Institute of Engineering Innovations, School of Engineering, The University of Tokyo. Quantum optoelectronics, carbon nanotube optoelectronics, carbon nanotube spintronics.

http://ykkato.t.u-tokyo.ac.jp/

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Kato Group | ykkato.t.u-tokyo.ac.jp Reviews

https://ykkato.t.u-tokyo.ac.jp

Kato Group, Institute of Engineering Innovations, School of Engineering, The University of Tokyo. Quantum optoelectronics, carbon nanotube optoelectronics, carbon nanotube spintronics.

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ykkato.t.u-tokyo.ac.jp ykkato.t.u-tokyo.ac.jp
1

Kato Group:Research:Chemical vapor deposition of single-walled carbon nanotubes

http://ykkato.t.u-tokyo.ac.jp/nanotubecvd.en.html

Institute of Engineering Innovation. The University of Tokyo. Chirality and electronic structure. Chemical vapor deposition of single-walled carbon nanotubes. There exists various methods for synthesizing carbon nanotubes, and we use alcohol catalytic chemical vapor deposition. Using metal particles as catalyst, growth of single-walled carbon nanotubes occurs when alcohol is introduced into a heated furnace to react with the catalyst. Our setup is based on that of Maruyama group.

2

Kato Group:Gallery

http://ykkato.t.u-tokyo.ac.jp/gallery.en.html

Institute of Engineering Innovation. The University of Tokyo. Spring and Fall 2010.

3

Kato Group:Research:Carbon-nanotube field-effect transistor

http://ykkato.t.u-tokyo.ac.jp/nanotubetransistor.en.html

Institute of Engineering Innovation. The University of Tokyo. Chirality and electronic structure. Single-walled carbon nanotubes have diameters of only a few nanometers, but they can grow as long as a millimeter. It is very difficult to put electrical contacts on a molecule or a quantum dot, but in the case of carbon nanotubes, it is fairly easy to make a device with individual nanotubes. Is performed to grow carbon nanotubes. Finally, metal contacts are evaporated.

4

Kato Group:People

http://ykkato.t.u-tokyo.ac.jp/people.en.html

Institute of Engineering Innovation. The University of Tokyo.

5

Kato Group:Research:Exciton diffusion in carbon nanotubes

http://ykkato.t.u-tokyo.ac.jp/excitondiffusion.en.html

Institute of Engineering Innovation. The University of Tokyo. Chirality and electronic structure. Exciton diffusion in carbon nanotubes. We investigate the diffusion length of excitons by measuring photoluminescence (PL). In order to obtain suspended SWCNTs, trenches with various widths are formed on Si substrates using standard lithography and dry etching processes. Catalyst is placed next to the trenches, and alcohol catalytic chemical vapor deposition. Nanotube length dependence of PL intensity.

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Overview | Spintech VII International School and Conference | July 29 - August 2, 2013 | Chicago, Illinois USA

http://spintech7.cnsi.ucsb.edu/overview

Skip to main content. Spintech VII International School and Conference July 29 - August 2, 2013 Chicago, Illinois USA. The topics include experimental and theoretical investigations of:. Spin current generation, manipulation, and detection. Spin coherence and manipulation. Topological insulators and graphene. Spintronic materials including metals, semiconductors and insulators (both organic and inorganic materials). Quantum information processing (including atoms in vacuum, etc.). University of Sao Paulo.

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Kato Group

Kato Group, Institute of Engineering Innovations, School of Engineering, The University of Tokyo. Associate Professor Yuichiro Kato. Quantum optoelectronics, carbon nanotube optoelectronics, carbon nanotube spintronics. Institute of Engineering Innovation. The University of Tokyo. This is a group that started in 2007 and is a part of the Institute of Engineering Innovation. Our research focus is on quantum optoelectronics, and we accept graduate students in the Department of Electrical Engineering. Y Kum...

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