Personnel Information


Ashida Atsushi

Job Title



Electronics Mathematics and Physics

Mail Address

E-mail address

Homepage URL

Faculty in charge, etc. 【 display / non-display

  • Faculty of Liberal Arts and Sciences

  • Graduate School of Engineering, School of Engineering

Research field 【 display / non-display

  • inorganic materials and its properties

  • electronic devices, electronic equipments

  • electronic and electric materials

  • thin film, surface and interface physics

  • applied materials science, applied crystallography

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Research content 【 display / non-display

  • (Keyword)colar cells, chalcopyrite, thin film growth, crystal orienntation, compound semiconductor

  • (Keyword)immmiscibility, mixed crystal, photoluminescence, solution growth, compound semiconductor

  • (Keyword)zinc oxide (ZnO), thin film growth, diluted magnetic semiconductor, opto-electronics, oxide semiconductor

  • (Keyword)electromagnetic wave heating, microwave heating, Raman spectroscopy, ellipsometru, photoluminescence

  • (Summary)Cuntrol of the interface and improvement of conversion efficiency of hetero-junction solar cells prepared by electrochemical processes

    (Keyword)copper oxide (Cu2O), electrochemical, zinc oxide (ZnO), solar cell, thin film growth

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Degree 【 display / non-display

  • Ph. D

Academic Society Affiliations 【 display / non-display

  • The Japan Society of Applied Physics

  • The Surface Science Society of Japan

  • The Japanese Association for Crystal Growth

  • Thin Film and Surface Physics Division, the Japan Society of Applied Physics

  • Division of Crystals Science and Technology, the Japan Society of Applied Physics

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Books 【 display / non-display

  • IPAP Books 1, "Japanese Research Review for Pioneering, "Ternary and Multinary Compounds in the 21st Century", The Institute of Pure and Applied Physics, 2001.12, Multiple Authorship, A. Ashida, N. Yamamoto and T. Ito

Papers 【 display / non-display

  • Fabrication and Characterization of (Ba,La)SnO3 Semiconducting Epitaxial Films on (111) and (001) SrTiO3 Substrates , Physica Status Solidi A, 2018.07, Kohei Miura, Daisuke Kiriya, Takeshi Yoshimura, Atsushi Ashida, and Norifumi Fujimura

  • Reaction of N,N’-dimethylformamide and divalent viologen molecule to generate an organic dopant for molybdenum disulfide, AIP Advances, 2018.05, Akito Fukui, Kohei Miura, Hisashi Ichimiya, Akihiro Tsurusaki, Kento Kariya, Takeshi Yoshimura, Atsushi Ashida, Norifumi Fujimura, and Daisuke Kiriya

  • Origin of the photoinduced current of strongly correlated YMnO3 ferroelectric epitaxial films, Japanese Journal of Applied Physics, 2017.09, Kohei Miura, Lejun Zhang, Daisuke Kiriya, Atsushi Ashida, Takeshi Yoshimura and Norifumi Fujimura

  • Cerium ion doping into self-assembled Ge using three-dimensional dot structure, Journal of Crystal Growth, 2017.06, Y. Miyata, K. Ueno, T. Yoshimura, A. Ashida and N. Fujimura

  • Control of native acceptor density in epitaxial Cu2O thin films grown by electrochemical deposition, Journal of Crystal Growth, 2017.06, A. Ashida, S. Sato, T. Yoshimura, N. Fujimura

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Charge of class subject 【 display / non-display

  • Special SiMS Research

  • Introduction to Electronics Materials Scienc

  • Advanced Physics of Novel Devices

  • Special Seminar for Buisiness Planning based on System-inspired Material Science

  • Introduction to System-inspired Material Science