Strain effect of a-axis oriented Sr1-xLaxCuO2 thin films grown on LaAlO3 substrates

Y. He, M. Ito, T. Hajiri, K. Ueda, H. Asano

研究成果: Conference contribution

抄録

Electron-doped infinite-layer compound Sr1-xLaxCuO2(SLCO) is suitable for fundamental studies and device applications because of the simplest crystal structure and the highest Tc among electron-doped superconducting cuprates. The epitaxially grown c-axis oriented SLCO thin films with Tc of around 40 K were fabricated on the lattice matched substrates like DyScO3 and KTaO3[1]. Since the in-plane coherence length xab(4.5nm) of SLCO is much larger than the out-of-plane coherence length xc(0.3nm)[2], the a-axis oriented films are favorable for junction fabrication. However, compared with c-axis oriented thin films, the resistivities of a-axis oriented thin films were thousands times larger and the properties were semiconductor-like[3]. It's reasonable to consider that the unclear strain effect from LAO substrates need to be clarified. In this paper, we report on a systematic investigation of the structure and electrical properties of c-axis oriented SLCO thin films grown on BaySr1-yTiO3 (BSTO) buffer layers with tunability of the lattice constant from a0=0.3905 nm (y=0, SrTiO3) to a0=0.4000 nm (y=1, BaTiO3), which is favorable to obtain a quantified result of strain effect. We also report on structure and electrical properties improvement of a-axis oriented SLCO thin films on LAO substrates by strain effect control which has been quanti-ficationally studied by c-axis oriented SLCO thin films.

本文言語English
ホスト出版物のタイトル2015 IEEE International Magnetics Conference, INTERMAG 2015
出版社Institute of Electrical and Electronics Engineers Inc.
ISBN(電子版)9781479973224
DOI
出版ステータスPublished - 2015 7月 14
外部発表はい
イベント2015 IEEE International Magnetics Conference, INTERMAG 2015 - Beijing, China
継続期間: 2015 5月 112015 5月 15

出版物シリーズ

名前2015 IEEE International Magnetics Conference, INTERMAG 2015

Other

Other2015 IEEE International Magnetics Conference, INTERMAG 2015
国/地域China
CityBeijing
Period15/5/1115/5/15

ASJC Scopus subject areas

  • 電子材料、光学材料、および磁性材料
  • 電子工学および電気工学
  • 表面、皮膜および薄膜

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