论文标题
Verwey过渡是通过电子词素偶联到Trimerons的演变
Verwey transition as evolution from electronic nematicity to trimerons via electron-phonon coupling
论文作者
论文摘要
了解金属 - 绝缘体转变(MIT)背后的驾驶机制是迈向控制材料特性的关键步骤。由于1939年,Verwey在磁铁矿Fe3O4中提出了电荷订购诱导的MIT的提议,因此电荷顺序的性质及其在过渡中的作用仍然难以捉摸,这在复杂氧化物的研究中长期存在挑战。最近,在Fe3O4的低温单斜结构中发现了Trimeron秩序。然而,在Verwey过渡时形成Trimeron的预期过渡熵变化大于观察到的值,该值在高温相中对基态的重新检查。在这里,我们使用电子衍射来揭示特定FE位点上的列电荷顺序在散装FE3O4的高温立方结构中出现,并且在冷却后,电荷和晶格订单的竞争性相互交织会导致Verwey Transition的出现。此外,MEV Ultrafast电子衍射(UED)提供了对光激发电子和X3声子模式之间强耦合的动态度量。我们的发现在相关材料中发现了一种新型的电子非神经性,并通过电子波耦合对Fe3O4中Verwey过渡机构提供了新的见解。
Understanding the driving mechanisms behind metal-insulator transitions (MITs) is a critical step towards controlling material's properties. Since the proposal of charge-order-induced MIT in magnetite Fe3O4 in 1939 by Verwey, the nature of the charge order and its role in the transition have remained elusive-a longstanding challenge in the studies of complex oxides. Recently, a trimeron order was discovered in the low-temperature monoclinic structure of Fe3O4; however, the expected transition entropy change in forming trimeron at the Verwey transition is greater than the observed value, which arises a reexamination of the ground state in the high-temperature phase. Here we use electron diffraction to unveil that a nematic charge order on particular Fe sites emerges in the high-temperature cubic structure of bulk Fe3O4, and that upon cooling, a competitive intertwining of charge and lattice orders leads to the emergence of the Verwey transition. Moreover, MeV ultrafast electron diffraction (UED) provides a dynamic measure of the strong coupling between photoexcited electrons and the X3 phonon modes. Our findings discover a new type of electronic nematicity in correlated materials and offer novel insights into the Verwey transition mechanism in Fe3O4 via the electron-phonon coupling.