Optical Study of Tetragonal Domains in LaAlO3/SrTiO3

Scanning superconducting quantum interference device (SQUID) measurements recently revealed enhanced channels of conductivity at the conducting LaAlO 3 /SrTiO 3 (LAO/STO) interface (Kalisky et al. Nat. Mater. 12 , 1091 2013 ). The orientation of the channels and their thermal behavior suggest that t...

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Published inJournal of superconductivity and novel magnetism Vol. 28; no. 3; pp. 1017 - 1020
Main Authors Erlich, Z., Frenkel, Y., Drori, J., Shperber, Y., Bell, C., Sato, H. K., Hosoda, M., Xie, Y., Hikita, Y., Hwang, H. Y., Kalisky, B.
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Published Boston Springer US 01.03.2015
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Abstract Scanning superconducting quantum interference device (SQUID) measurements recently revealed enhanced channels of conductivity at the conducting LaAlO 3 /SrTiO 3 (LAO/STO) interface (Kalisky et al. Nat. Mater. 12 , 1091 2013 ). The orientation of the channels and their thermal behavior suggest that they originate as a consequence of the STO tetragonal domain formation which sets in below ∼105 K. In this work, we use polarized light microscopy to acquire images of the tetragonal domains in the same group of LAO/STO samples. We looked at the configuration of the domains (orientation and spacing) and followed their behavior as a function of temperature and back-gate voltage. The optical data agrees with the electrical behavior mapped magnetically. This direct and independent study of the domain structure confirms that the channel-like conductivity in LAO/STO is due to the STO tetragonal domain structure and emphasizes the importance of STO physics to the interfacial properties. These results demonstrate how small structural changes in perovskite crystals strongly influence the electronic characteristics of heterostructures.
AbstractList Scanning superconducting quantum interference device (SQUID) measurements recently revealed enhanced channels of conductivity at the conducting LaAlO 3 /SrTiO 3 (LAO/STO) interface (Kalisky et al. Nat. Mater. 12 , 1091 2013 ). The orientation of the channels and their thermal behavior suggest that they originate as a consequence of the STO tetragonal domain formation which sets in below ∼105 K. In this work, we use polarized light microscopy to acquire images of the tetragonal domains in the same group of LAO/STO samples. We looked at the configuration of the domains (orientation and spacing) and followed their behavior as a function of temperature and back-gate voltage. The optical data agrees with the electrical behavior mapped magnetically. This direct and independent study of the domain structure confirms that the channel-like conductivity in LAO/STO is due to the STO tetragonal domain structure and emphasizes the importance of STO physics to the interfacial properties. These results demonstrate how small structural changes in perovskite crystals strongly influence the electronic characteristics of heterostructures.
Author Kalisky, B.
Hwang, H. Y.
Bell, C.
Sato, H. K.
Hikita, Y.
Erlich, Z.
Xie, Y.
Drori, J.
Hosoda, M.
Frenkel, Y.
Shperber, Y.
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  organization: Department of Condensed Matter Physics, Weizmann Institute of Science
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  surname: Shperber
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  organization: Department of Physics and Institute of Nanotechnology and Advanced Materials, Bar-Ilan University
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  surname: Bell
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  organization: SLAC National Accelerator Laboratory, Stanford Institute for Materials and Energy Sciences, H. H. Wills Physics Laboratory, University of Bristol
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  organization: SLAC National Accelerator Laboratory, Stanford Institute for Materials and Energy Sciences
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  fullname: Hikita, Y.
  organization: SLAC National Accelerator Laboratory, Stanford Institute for Materials and Energy Sciences
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  surname: Hwang
  fullname: Hwang, H. Y.
  organization: SLAC National Accelerator Laboratory, Stanford Institute for Materials and Energy Sciences, Department of Applied Physics, Stanford University
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  surname: Kalisky
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  organization: Department of Physics and Institute of Nanotechnology and Advanced Materials, Bar-Ilan University
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Keywords Polarized light microscopy
LaAlO3/SrTiO3
Tetragonal domains
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Snippet Scanning superconducting quantum interference device (SQUID) measurements recently revealed enhanced channels of conductivity at the conducting LaAlO 3 /SrTiO...
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SubjectTerms Characterization and Evaluation of Materials
Condensed Matter Physics
Magnetic Materials
Magnetism
Original Paper
Physics
Physics and Astronomy
Strongly Correlated Systems
Superconductivity
Title Optical Study of Tetragonal Domains in LaAlO3/SrTiO3
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