4.8 Article

Competition between Polar and Nonpolar Lattice Distortions in Oxide Quantum Wells: New Critical Thickness at Polar Interfaces

期刊

PHYSICAL REVIEW LETTERS
卷 119, 期 10, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.119.106102

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资金

  1. Spanish Severo Ochoa grant [SEV-2015-0496]
  2. Generalitat de Catalunya [2014 SGR 734, 2014 SGR301]
  3. MINECO [MAT2016-77100-C2-2-P, FIS2013-48668-C2-2-P]
  4. Fundacion BBVA
  5. Spanish MINECO [MAT2015-66888-C3-3-R]
  6. [MAT2014-56063-C2-1-R]
  7. [RyC-2012-11709]

向作者/读者索取更多资源

Two basic lattice distortions permeate the structural phase diagram of oxide perovskites: antiferrodistortive (AFD) rotations and tilts of the oxygen octahedral network and polar ferroelectric modes. With some notable exceptions, these two order parameters rarely coexist in a bulk crystal, and understanding their competition is a lively area of active research. Here we demonstrate, by using the LaAlO3/SrTiO3 system as a test case, that quantum confinement can be a viable tool to shift the balance between AFD and polar modes and selectively stabilize one of the two phases. By combining scanning transmission electron microscopy (STEM) and first-principles-based models, we find a crossover between a bulklike LaAlO3 structure where AFD rotations prevail, to a strongly polar state with no AFD tilts at a thickness of approximately three unit cells; therefore, in addition to the celebrated electronic reconstruction, our work unveils a second critical thickness, related not to the electronic properties but to the structural ones. We discuss the implications of these findings, both for the specifics of the LaAlO3/SrTiO3 system and for the general quest towards nanoscale control of material properties.

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