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Spontaneous atomic ordering and magnetism in epitaxially stabilized double-perovskites

机译:外延稳定双钙钛矿中的自发原子序和磁性

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摘要

We report on the atomic ordering of B-site transition-metals and magnetic properties in double-perovskite oxides, La_2CrFeO_6 (LCFO) and La_2VMnO_6 (LVMO), which have never been reported to exist in ordered forms. These double-perovskite oxides are particularly interesting because of possible ferromagnetism (expected from the Kanamori-Goodenough rule for LCFO) and half-metallic antiferromagnetism (predicted for LVMO). Using pulsed-laser deposition technique with single solid-solution targets, we have prepared epitaxial films in ordered forms. Despite similar ionic characters of constituent transition-metals in each compound, the maximum B-site order attained was surprisingly high, ~90% for LCFO and ~80% for LVMO, suggesting a significant role of epitaxial stabilization in the spontaneous ordering process. Magnetization and valence state characterizations revealed that the magnetic ground state of both compounds was coincidently ferrimagnetic with saturation magnetization of ~2μ_B per formula unit, unlike those predicted theoretically. In addition, they were found to be insulating with optical band-gaps of 1.6 eV and 0.9 eV for LCFO and LVMO, respectively. Our results present a wide opportunity to explore novel magnetic properties of binary transition-metal perovskites upon epitaxial stabilization of the ordered phase.
机译:我们报告了双钙钛矿氧化物La_2CrFeO_6(LCFO)和La_2VMnO_6(LVMO)中B位过渡金属的原子有序化和磁性,但从未报道它们以有序形式存在。这些双钙钛矿氧化物特别有趣,因为可能存在铁磁性(根据LCFO的Kanamori-Goodenough规则预计)和半金属反铁磁性(针对LVMO预计)。使用具有单个固溶体靶标的脉冲激光沉积技术,我们以有序形式制备了外延膜。尽管每种化合物中过渡金属的离子特征相似,但获得的最大B位阶却出乎意料地高,LCFO约为90%,LVMO约为80%,表明外延稳定在自发有序过程中起着重要作用。磁化和价态表征表明,这两种化合物的磁性基态均符合亚铁磁性,每个公式单位的饱和磁化强度约为2μB,与理论上预测的不同。此外,发现它们对于LCFO和LVMO的光学带隙分别为1.6 eV和0.9 eV绝缘。我们的结果为探索有序相的外延稳定后二元过渡金属钙钛矿的新型磁性提供了广阔的机会。

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  • 会议地点 San Francisco CA(US);San Francisco CA(US)
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    Department of Applied Chemistry, Tokyo Institute of Technology, Tokyo 152-8552, Japan,ALCA, Japan Science and Technology Agency (JST), Tokyo 102-0076, Japan;

    Correlated Electron Research Group (CERG) and Cross-Correlated Materials Research Group (CMRG), RIKEN Advanced Science Institute, Wako 351-0198, Japan;

    Department of Applied Chemistry, Tokyo Institute of Technology, Tokyo 152-8552, Japan;

    Department of Applied Chemistry, Tokyo Institute of Technology, Tokyo 152-8552, Japan;

    Quantum-Phase Electronics Center and Department of Applied Physics, The University of Tokyo, Tokyo 113-8656, Japan,Correlated Electron Research Group (CERG) and Cross-Correlated Materials Research Group (CMRG), RIKEN Advanced Science Institute, Wako 351-0198, Japan,CREST, Japan Science and Technology Agency (JST), Tokyo 102-0075, Japan;

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