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Dive into the research topics where Yuka Yamada is active.

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Featured researches published by Yuka Yamada.


Laser applications in microelectronic and optoelectronic manufacturing. Conference | 1999

Semiconductor nanocrystallite formation using inert gas ambient pulsed laser ablation and its application to light emitting devices

Takehito Yoshida; Yuka Yamada; Nobuyasu Suzuki; Toshiharu Makino; Takaaki Orii; Seinosuke Onai

Pulsed laser ablation (PLA) in inert background gases can synthesize the nanoscaled silicon (Si), for studying its material properties as one of the quantum confinement effects. We report an optimized condition in Si nanocrystalline formation by the PLA in inert background gas, varying processing parameters: pulse energy and width, inert background gas pressure. The optimized process can prepare well-dispersed Si nanocrystallites without any droplets and debris. Furthermore, we investigate the influence of the processing parameters Si nanocrystallites without any droplets and debris. Furthermore, we investigate the influence of the processing parameters on transition from amorphous-like Si thin films to nanocrystallites. It was found that there is a processing window of the inert background gas pressure where the carrier confinement effects become apparent. Next, we have fabricated electroluminescent (EL), diodes with active layers of the Si nanocrystallites. The structure of the EL diodes was semitransparent platinum electrode/Si nanocrystallite layer/p-type Si/Pt electrode. We have observed visible spectra of not only green photoluminescence, but also red EL, at room temperature. Furthermore, we have found that the EL diodes showed strong nonlinear dependence of EL intensity on current density.


Archive | 2002

Depositing method and a surface modifying method for nano-particles in a gas stream

Nobuyasu Suzuki; Toshiharu Makino; Yuka Yamada; Takehito Yoshida


Archive | 2001

Method and apparatus for fabricating quantum dot functional structure, quantum dot functional structure, and optically functioning device

Nobuyasu Suzuki; Toshiharu Makino; Yuka Yamada; Takehito Yoshida; Takafumi Seto; Nobuhiro Aya


Archive | 2005

Manufacturing method of electrode catalyst

Hideaki Adachi; Masaaki Suzuki; Nobuyasu Suzuki; Yuka Yamada; 由佳 山田; 秀明 足立; 信靖 鈴木; 正明 鈴木


Archive | 2005

Porous body and its production method

Yuka Yamada; Masaaki Suzuki; Nobuyasu Suzuki; Yasuki Morinaga; Hidehiro Sasaki


Archive | 2003

Porous article and method for production thereof and electrochemical element using the porous article

Masaaki Suzuki; Hidehiro Sasaki; Yasunori Morinaga; Masahiro Deguchi; Yuka Yamada; Nobuyasu Suzuki


Archive | 2004

METHOD FOR PRODUCING ELECTRODE FOR OXYGEN REDUCTION, ELECTRODE FOR OXYGEN REDUCTION, AND ELECTROCHEMICAL DEVICE USING SAME

Masaaki Suzuki; Yuka Yamada; Nobuyasu Suzuki; Yasunori Morinaga; Hidehiro Sasaki; Tadashi Sotomura; Mitsuru Hashimoto; Masahiro Deguchi; Akira Taomoto; Toyokazu Ozaki


Archive | 1997

Optoelectronic material and its application device as well as manufacture of optoelectronic material

Yuka Yamada; Takehito Yoshida; 岳人 吉田; 由佳 山田


Archive | 1997

Optoelectronic material, device using the same, and method for manufacturing the same

Yuji Matsuda; Katsuhiko Mutoh; Shigeru Takeyama; Yuka Yamada; Takehito Yoshida


Archive | 2014

THERMOELECTRIC POWER GENERATION DEVICE AND THERMOELECTRIC POWER GENERATION METHOD

Kohei Takahashi; Tsutomu Kanno; Akihiro Sakai; Hiromasa Tamaki; Yuka Yamada

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Nobuyasu Suzuki

National Institute of Advanced Industrial Science and Technology

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Takehito Yoshida

National Institute of Advanced Industrial Science and Technology

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Toshiharu Makino

National Institute of Advanced Industrial Science and Technology

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