Bilayer-single-layer competition in artificial hybrid superlattices of square-lattice iridates
ORAL
Abstract
Controlling fundamental electronic and magnetic degrees of freedom via artificial heterostructure engineering is expected to provide a new way for obtaining new emergent quantum states. We successfully designed and synthesized a new hybrid superlattice (SL) of (SrIrO3)1/(SrTiO3)1/(SrIrO3)2/(SrTiO3)1 that combines single-layer and bilayer of Jeff = 1/2 square lattices which cannot be realized in the bulk materials. X-ray diffraction and resistivity measurements suggest that the hybrid SL hosts an intermediate electronic and structurally distorted state of the single-layer (SrIrO3)1/(SrTiO3)1 and bi-layer (SrIrO3)2/(SrTiO3)1 SLs. More interestingly, resonant x-ray magnetic scattering and magnetization measurements show that the hybrid SL stabilizes a unique magnetic state with a transition temperature similar to the bilayer SL but with a planar anisotropy similar to that of the single-layer SL. This may suggest that the hybrid state is closer to the quantum phase transition boundary between ab plane and c-axis magnetic states.
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Presenters
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Dongliang Gong
University of Tennessee
Authors
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Dongliang Gong
University of Tennessee
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Junyi Yang
University of Tennessee
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Joerg Strempfer
Argonne National Laboratory
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Evguenia Karapetrova
Argonne National Laboratory, Argonne National Lab, Advanced Photon Source, Argonne National Laboratory, Argonne Nationa Lab
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Lin Hao
Hefei Institutes of Physical Science
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Yongseong Choi
Argonne National Laboratory, Argonne National Lab
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Jong-Woo Kim
Argonne National Laboratory, Argonne National Lab
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Philip J Ryan
Argonne National Laboratory
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Jian Liu
University of Tennessee