论文标题

在MNO,FEO,COO和NIO的压力诱导的Mott转变附近的量子临界电荷和自旋状态波动的出现

Emergence of quantum critical charge and spin-state fluctuations near the pressure-induced Mott transition in MnO, FeO, CoO, and NiO

论文作者

Leonov, I., Shorikov, A. O., Anisimov, V. I., Abrikosov, I. A.

论文摘要

我们使用完全电荷的自耐DFT+动力学平均均值场理论方法,对晚期过渡金属一氧化物MNO,FEO,COO和NIO的电子结构,磁态和相位稳定性的演化进行了全面的理论研究。我们的结果表明,MNO-NIO中压力诱导的Mott绝缘体到金属相变,伴随着局部磁矩和晶格体积的同时崩溃,这意味着化学键合和电子相关性之间存在复杂的相互作用。我们计算不同价状态和自旋状态构型的相对权重演化的压力诱导的演变。在相关的固体中采用波动价的概念,我们证明,在MNO,FEO和COO中,Mott Mott绝缘子 - 金属过渡和局部矩的崩溃伴随着旋转状态和价构型的急剧交叉。我们对磁塌陷的微观解释与公认的图像不同,并指出了高,中间和低旋转状态的显着动态共存(挫败感)。特别是,在MNO中,发现磁塌陷是由中间旋转状态(IS)的外观驱动的,与低自旋(LS)状态竞争;在FEO中,我们观察到常规的高旋转到低自旋(HS-LS)跨界。最有趣的是,在首席运营官中,我们获得了HS和LS状态的显着(动态)共存,即HS-LS挫败感,直至高压。我们的结果证明了价和自旋状态的量子波动对于理解莫特过渡的量子关键性的重要性。

We perform a comprehensive theoretical study of the pressure-induced evolution of the electronic structure, magnetic state, and phase stability of the late transition metal monoxides MnO, FeO, CoO, and NiO using a fully charge self-consistent DFT+dynamical mean-field theory method. Our results reveal that the pressure-induced Mott insulator-to-metal phase transition in MnO-NiO is accompanied by a simultaneous collapse of local magnetic moments and lattice volume, implying a complex interplay between chemical bonding and electronic correlations. We compute the pressure-induced evolution of relative weights of the different valence states and spin-state configurations. Employing the concept of fluctuating valence in a correlated solid, we demonstrate that in MnO, FeO, and CoO a Mott insulator-metal transition and collapse of the local moments is accompanied by a sharp crossover of the spin-state and valence configurations. Our microscopic explanation of the magnetic collapse differs from the accepted picture and points out a remarkable dynamical coexistence (frustration) of the high-, intermediate-, and low-spin states. In particular, in MnO, the magnetic collapse is found to be driven by the appearance of the intermediate-spin state (IS), competing with the low-spin (LS) state; in FeO, we observe a conventional high-spin to low-spin (HS-LS) crossover. Most interestingly, in CoO, we obtain a remarkable (dynamical) coexistence of the HS and LS states, i.e., a HS-LS frustration, up to high pressure. Our results demonstrate the importance of quantum fluctuations of the valence and spin states for the understanding of quantum criticality of the Mott transitions.

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