Session Details

[21a-P03-1~16]6.4 Thin films and New materials

Thu. Sep 21, 2023 9:30 AM - 11:30 AM JST
Thu. Sep 21, 2023 12:30 AM - 2:30 AM UTC
P03 (KJ Hall)

[21a-P03-1]Metal hydrides film growth using ionic liquid-assisted vapor deposition

〇(M1)Kazuma Owaki1, Takumi Tozawa1, Takayuki Harada2, Hiroyuki Oguchi1 (1.Shibaura Inst., 2.NIMS)

[21a-P03-2]MgH2 epitaxial thin film growth by effectively using active hydrogen

〇(M1)Yuki Shimoman1, Kota Munefusa1, Takayuki Harada2, Hiroyuki Oguchi1 (1.Shibaura Tech., 2.NIMS)

[21a-P03-3]Preparation and Characterization of YMnO3 Thin Films by Metal – Organic Decomposition

〇Kanata Watanabe1, Fatima Zahra Chafi1, Takayuki Ishibashi1 (1.Nagaoka Univ. Tech.)

[21a-P03-4]Analysis of reflectivity of Bi-substituted iron garnet films by excimer-laser assisted MOD

〇(M1C)Shun Nakazawa1, Keitaro Isomura1, Fatima Zahra Chafi1, Masami Nishikawa1, Masami Kawahara2, Takayuki Ishibashi1 (1.Nagaoka Univ. of Tech., 2.Kojundo Chem. Lab.)

[21a-P03-5]Composition Dependence of Buffer Layer in Magnetic Garnet Films by MOD Method

〇Haru Nakano1, Keishi Yokono1, Kenta Mori1, Takao Nishi1, Tetsunori Kanda2, Takeshi Kato3, Masami Kawahara4, Masami Nishikawa5, Takayuki Ishibashi5 (1.Kobe City Col. of Tech., 2.Oshima College, 3.Nagoya Univ., 4.KOJUNDO CHEMICAL LAB., 5.Nagaoka Univ. of Tech.)

[21a-P03-6]Characterization of Magnetic Garnet Thin Films Prepared by MOD method using Organic Compounds with Different Chain Structures

〇Keishi Yokono1, Haru Nakano1, Kenta Mori1, Takao Nishi1, Tetsunori Kanda2, Takeshi Kato3, Masami Kawahara4, Masami Nishikawa5, Takayuki Ishibashi5 (1.Kobe City Col. of Tech., 2.Oshima College, 3.Nagoya Univ., 4.KOJUNDO CHEMICAL LAB., 5.Nagoka Univ. of Tech.)

[21a-P03-7]High Frequency Properties of Bismuth-substituted Europium Iron Garnet

〇(M1)MdAbdullahAl Masud1, Wataru Asano1, Takao Nishi2, Daiki Oshima3, Takeshi Kato3, Kiejin Lee4, Masami Kawahara5, Fatima Zahra Chafi1, Masami Nishikawa1, Takayuki Ishibashi1 (1.Nagaoka Univ. Tech., 2.Kobe City Coll. Tech., 3.Nagoya Univ., 4.Sogang Univ., 5.Kojundo Chem.)

[21a-P03-8]Crystallographic Orientation Dependence of Physical Properties of Epitaxial Mn-doped ITO Films

〇Saiki Kitagawa1,2,3, Toshihiro Nakamura1,3 (1.Kyoto Univ., 2.Japan Society for the Promotion of Science, 3.ILAS, Kyoto Univ.)

[21a-P03-9]Electrical transport properties of CrSe thin films grown by pulsed-laser deposition

〇Yusuke Tajima1, Junichi Shiogai1,2, Kohei Ueda1,2, Jobu Matsuno1,2 (1.Dept. of Phys. Osaka Univ., 2.OTRI-Spin, Osaka Univ.)

[21a-P03-10]Control of the conducting channel thickness of Co3Sn2S2 films using an electric-double-layer device structure

〇Kohei Fujiwara1, Junya Ikeda1, Shun Ito1, Atsushi Tsukazaki1,2 (1.IMR, Tohoku Univ., 2.CSIS, Tohoku Univ.)

[21a-P03-11]Improvement of properties of p-type transparent semiconductor CuI thin film fabricated by electron beam evaporation

〇Takashi Inomata1, Manabu Kimoto2, Keisuke Fujita3, Tomokazu Nagao3 (1.Kisan Kinzoku Chemicals, 2.TECHNO ASSOCIE, 3.NBC Meshtec)

[21a-P03-12]Growth of hexagonal ZnSnN2 layer by UHV sputter epitaxy method

〇Toshiki Nagasawa1, Yoshida Keisuke1, Shinoda Hiroyuki1, Mutsukura Nobuki1 (1.Tokyo Denki Univ.)

[21a-P03-13]Crack prevention by SiO layer for the BPF on resin substrate

〇Koichi Muro1, Akira Mochiduki2, Wataru Kanazawa3 (1.Teikyo Univ., 2.Taishou Optical., 3.Sanwa Kenma, Ltd.)

[21a-P03-14]Attempts to improve conductivity of amorphous IZO nanofiber non-woven fabrics

〇(M2)Yuki Ogawa1, Jun Okishita1, Kento Uchida1, Yumina Uchiyama1, Teruaki Nomiyama1, Yuji Horie1 (1.Kagoshima Univ)

[21a-P03-15]Influence of Chemical Composition on Electrical Characterization for Pb(Zr0.52, Ti0.48)O3 Thin Films Deposited on Flexible Printed Circuit

〇Naoki Nishikawa1, Norimitsu Hirosaki2, Hiroaki Nishikawa3 (1.Grad. Sch. B.O.S.T., Kindai Univ, 2.Taiyo Industrial Co., LTD, 3.B.O.S.T., Kindai Univ)

[21a-P03-16]Fabrication of freestanding hydroxyapatite thin films using ZnO dissolution by acetylacetone

〇(M1)Yuuya Oda1, Hiroaki Nishikawa2 (1.Grad. Sch., B.O.S.T., Kindai Univ., 2.B.O.S.T., Kindai Univ.)