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Pure electronic metal-insulator transition at the interface of complex oxides

机译:纯电子金属绝缘体在复合氧化物界面处过渡

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In complex materials observed electronic phases and transitions between them often involve coupling between many degrees of freedom whose entanglement convolutes understanding of the instigating mechanism. Metal-insulator transitions are one such problem where coupling to the structural, orbital, charge, and magnetic order parameters frequently obscures the underlying physics. Here, we demonstrate a way to unravel this conundrum by heterostructuring a prototypical multi-ordered complex oxide NdNiO3 in ultra thin geometry, which preserves the metal-to-insulator transition and bulk-like magnetic order parameter, but entirely suppresses the symmetry lowering and long-range charge order parameter. These findings illustrate the utility of heterointerfaces as a powerful method for removing competing order parameters to gain greater insight into the nature of the transition, here revealing that the magnetic order generates the transition independently, leading to an exceptionally rare purely electronic metal-insulator transition with no symmetry change.
机译:在复杂的材料中,观察到的电子阶段和转换通常涉及在许多自由度之间的耦合,其纠缠卷绕对煽动机制的理解。金属绝缘体过渡是一个这样的问题,其中与结构,轨道,电荷和磁性阶参数耦合经常遮挡底层物理学。在这里,我们展示了一种通过异质结构化的超薄几何形状中的异质化多订购的复合氧化物NdniO3来解开这种难题的方法,这保留了金属到绝缘体过渡和散装的磁场参数,而是完全抑制了降低和长的对称性 - 处理充电订单参数。这些发现说明了异元植物作为用于去除竞争订单参数的强大方法的实用性,以获得更大的洞察过渡性质,揭示磁场独立地产生过渡,导致具有极少数纯电子金属绝缘体的过渡没有对称性的变化。

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