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Control of Epitaxial BaFe2As2 Atomic Configurations with Substrate Surface Terminations.
Kang, Jong-Hoon; Xie, Lin; Wang, Yi; Lee, Hyungwoo; Campbell, Neil; Jiang, Jianyi; Ryan, Philip J; Keavney, David J; Lee, Jung-Woo; Kim, Tae Heon; Pan, Xiaoqing; Chen, Long-Qing; Hellstrom, Eric E; Rzchowski, Mark S; Liu, Zi-Kui; Eom, Chang-Beom.
Afiliação
  • Kang JH; Department of Materials Science and Engineering , University of Wisconsin-Madison , Madison , Wisconsin 53706 , United States.
  • Xie L; Department of Materials Science and Engineering and Department of Physics and Astronomy , University of California-Irvine , Irvine , California 92679 , United States.
  • Wang Y; National Laboratory of Solid State Microstructures and College of Engineering and Applied Sciences , Nanjing University , Nanjing , Jiangsu 210093 , People's Republic of China.
  • Lee H; Department of Materials Science and Engineering , The Pennsylvania State University , University Park , Pennsylvania 16802 , United States.
  • Campbell N; Department of Materials Science and Engineering , University of Wisconsin-Madison , Madison , Wisconsin 53706 , United States.
  • Jiang J; Department of Physics , University of Wisconsin-Madison , Madison , Wisconsin 53706 , United States.
  • Ryan PJ; Applied Superconductivity Center, National High Magnetic Field Laboratory , Florida State University , 2031 East Paul Dirac Drive , Tallahassee , Florida 32310 , United States.
  • Keavney DJ; Advanced Photon Source , Argonne National Laboratory , Argonne , Illinois 60439 , United States.
  • Lee JW; Advanced Photon Source , Argonne National Laboratory , Argonne , Illinois 60439 , United States.
  • Kim TH; Department of Materials Science and Engineering , University of Wisconsin-Madison , Madison , Wisconsin 53706 , United States.
  • Pan X; Department of Materials Science and Engineering , University of Wisconsin-Madison , Madison , Wisconsin 53706 , United States.
  • Chen LQ; Department of Materials Science and Engineering and Department of Physics and Astronomy , University of California-Irvine , Irvine , California 92679 , United States.
  • Hellstrom EE; Department of Materials Science and Engineering , The Pennsylvania State University , University Park , Pennsylvania 16802 , United States.
  • Rzchowski MS; Applied Superconductivity Center, National High Magnetic Field Laboratory , Florida State University , 2031 East Paul Dirac Drive , Tallahassee , Florida 32310 , United States.
  • Liu ZK; Department of Physics , University of Wisconsin-Madison , Madison , Wisconsin 53706 , United States.
  • Eom CB; Department of Materials Science and Engineering , The Pennsylvania State University , University Park , Pennsylvania 16802 , United States.
Nano Lett ; 18(10): 6347-6352, 2018 10 10.
Article em En | MEDLINE | ID: mdl-30149722
ABSTRACT
Atomic layer controlled growth of epitaxial thin films of unconventional superconductors opens the opportunity to discover novel high temperature superconductors. For instance, the interfacial atomic configurations may play an important role in superconducting behavior of monolayer FeSe on SrTiO3 and other Fe-based superconducting thin films. Here, we demonstrate a selective control of the atomic configurations in Co-doped BaFe2As2 epitaxial thin films and its strong influence on superconducting transition temperatures by manipulating surface termination of (001) SrTiO3 substrates. In a combination of first-principles calculations and high-resolution scanning transmission electron microscopy imaging, we show that Co-doped BaFe2As2 on TiO2-terminated SrTiO3 is a tetragonal structure with an atomically sharp interface and with an initial Ba layer. In contrast, Co-doped BaFe2As2 on SrO-terminated SrTiO3 has a monoclinic distortion and a BaFeO3- x initial layer. Furthermore, the superconducting transition temperature of Co-doped BaFe2As2 ultrathin films on TiO2-terminated SrTiO3 is significantly higher than that on SrO-terminated SrTiO3, which we attribute to shaper interfaces with no lattice distortions. This study allows the design of the interfacial atomic configurations and the effects of the interface on superconductivity in Fe-based superconductors.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2018 Tipo de documento: Article