论文标题

两轨退化以金属 - 绝缘体过渡的局部前体提升了状态

Two-orbital degeneracy lifted state as a local precursor to a metal-insulator transition

论文作者

Yang, Long, Koch, Robert J., Zheng, Hong, Mitchell, J. F., Yin, Weiguo, Tucker, Matthew G., Billinge, Simon J. L., Bozin, Emil S.

论文摘要

最近发现,CUIR2S4中局部波动的T2G轨道脱位(ODL)状态是金属 - 绝缘体转变(MIT)的高温前体(MIT),为几乎没有经过过渡金属基于金属量子材料的高温量的前体状态的广泛存在为可能存在的前体打开了大门。尽管在CUIR2S4中,ODL状态包含一个IR轨道,但没有根本的理由将多轨odl国家排除在外。 MGTI2O4尖晶石在Ts〜250 K处冷却时表现出MIT,并伴随Ti T2G轨道订购(OO)和自旋二聚化,而平均对称性降低至四方。它与Cuir2S4共享具有主动T2G轨道的Pyrochlore过渡金属sublattice。这及其不同的轨道填充(T2G1 vs T2G5.5)使其成为托管多轨前体前体状态的候选者。通过结合X射线和中子对分布函数分析以跟踪MIT局部原子结构的演变,我们发现在高温下的金属全球立方相中已经存在局部四部曲。局部畸变至少存在至少500 k。重要的是,高温局部状态并未连续连接到OO带绝缘子基态,因此过渡不能被描述为微不足道的阶命令类型。最短的Ti-Ti自旋单线二聚体键突然在整个过渡过程中突然扩展,但比立方结构中的最短。这些看似矛盾的观察可以在局部波动的两轨T2G ODL前体状态的模型中理解。 MGTI2O4中的ODL状态在高温下的相关长度约为1 nm。我们讨论的是,局部扭曲的这种扩展特征与电荷填充和债券电荷排斥所施加的ODL状态的两轨本质一致。

The recent discovery of a local fluctuating t2g orbital-degeneracy-lifted (ODL) state in CuIr2S4 as a high temperature precursor to the metal-insulator transition (MIT) opens the door to a possible widespread presence of precursor states in scarcely studied high-temperature regimes of transition metal based quantum materials. Although in CuIr2S4 the ODL state comprises one orbital per Ir, there is no fundamental reason to exclude multi-orbital ODL states in general. The MgTi2O4 spinel exhibits a MIT on cooling at Ts ~250 K, accompanied by Ti t2g orbital ordering (OO) and spin dimerization with the average symmetry reducing to tetragonal. It shares with CuIr2S4 the pyrochlore transition metal sublattice with active t2g orbitals. This, together with its different orbital filling (t2g1 vs t2g5.5) make it a candidate for hosting a multi-orbital ODL precursor state. By combining x-ray and neutron pair distribution function analyses to track the evolution of the local atomic structure across the MIT we find that local tetragonality already exists in the metallic globally cubic phase at high temperature. Local distortions exist up to at least 500 K. Significantly, the high temperature local state is not continuously connected to the OO band insulator ground state, and so the transition cannot be characterized as a trivial order-disorder type. The shortest Ti-Ti spin singlet dimer bonds expand abruptly on warming across the transition but remain shorter than those seen in the cubic structure. These seemingly contradictory observations can be understood within the model of a local fluctuating two-orbital t2g ODL precursor state. The ODL state in MgTi2O4 has a correlation length of about 1 nm at high temperature. We discuss that this extended character of the local distortions is consistent with the two-orbital nature of the ODL state imposed by the charge filling and the bond charge repulsion.

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