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- W2305258679 abstract "By using a combination of heteroepitaxial growth, structure refinement based on synchrotron x-ray diffraction, and first-principles calculations, we show that the symmetry-protected Dirac line nodes in the topological semimetallic perovskite ${mathrm{SrIrO}}_{3}$ can be lifted simply by applying epitaxial constraints. In particular, the Dirac gap opens without breaking the $Pbnm$ mirror symmetry. In virtue of a symmetry-breaking analysis, we demonstrate that the original symmetry protection is related to the $n$-glide operation, which can be selectively broken by different heteroepitaxial structures. This symmetry protection renders the nodal line a nonsymmorphic Dirac semimetallic state. The results highlight the vital role of crystal symmetry in spin-orbit-coupled correlated oxides and provide a foundation for experimental realization of topological insulators in iridate-based heterostructures." @default.
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- W2305258679 date "2016-02-11" @default.
- W2305258679 modified "2023-10-17" @default.
- W2305258679 title "Strain-induced nonsymmorphic symmetry breaking and removal of Dirac semimetallic nodal line in an orthoperovskite iridate" @default.
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- W2305258679 doi "https://doi.org/10.1103/physrevb.93.085118" @default.
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