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Cu(Ir1 − xCrx)2S4: a model system for studying nanoscale phase coexistence at the metal-insulator transition

机译:Cu(Ir1-xCrx)2S4:用于研究金属-绝缘体转变过程中纳米级相共存的模型系统

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摘要

Increasingly, nanoscale phase coexistence and hidden broken symmetry states are being found in the vicinity of metal-insulator transitions (MIT), for example, in high temperature superconductors, heavy fermion and colossal magnetoresistive materials, but their importance and possible role in the MIT and related emergent behaviors is not understood. Despite their ubiquity, they are hard to study because they produce weak diffuse signals in most measurements. Here we propose Cu(Ir1 − xCrx)2S4 as a model system, where robust local structural signals lead to key new insights. We demonstrate a hitherto unobserved coexistence of an Ir4+ charge-localized dimer phase and Cr-ferromagnetism. The resulting phase diagram that takes into account the short range dimer order is highly reminiscent of a generic MIT phase diagram similar to the cuprates. We suggest that the presence of quenched strain from dopant ions acts as an arbiter deciding between the competing ground states.
机译:越来越多的纳米级相共存和隐藏的对称破坏态出现在金属-绝缘体跃迁(MIT)附近,例如,在高温超导体,重费米子和巨大磁阻材料中,但它们的重要性以及在MIT和超导材料中的作用相关的紧急行为尚不清楚。尽管它们无处不在,但由于在大多数测量中它们会产生微弱的漫射信号,因此很难研究。在这里,我们提出Cu(Ir1-xCrx)2S4作为模型系统,其中可靠的局部结构信号导致关键的新见解。我们证明了Ir 4 + 电荷局部二聚体相和Cr铁磁性的迄今未发现的共存。考虑到短距离二聚体阶数的最终相图非常让人联想到类似于铜酸盐的通用MIT相图。我们建议,来自掺杂离子的淬灭应变的存在充当决定竞争基态之间的仲裁者。

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