论文标题

在磁铁矿中发现Trimeron Order的软电子模式

Discovery of the soft electronic modes of the trimeron order in magnetite

论文作者

Baldini, Edoardo, Belvin, Carina A., Rodriguez-Vega, Martin, Ozel, Ilkem Ozge, Legut, Dominik, Kozłowski, Andrzej, Oleś, Andrzej M., Parlinski, Krzysztof, Piekarz, Przemysław, Lorenzana, José, Fiete, Gregory A., Gedik, Nuh

论文摘要

磁铁矿(Fe $ _3 $ o $ _4 $)中的Verwey过渡是有史以来第一个金属 - 绝缘体过渡,并涉及伴随的结构重排和电荷孔排序。由于这些相互交织的自由度的复杂相互作用,磁铁矿的低温相和驱动过渡的机制的完整表征长期以来一直难以捉摸。近年来证明,电荷订购的结构的基本构建块是三个位点的小极地,称为Trimerons。但是,迄今为止尚未检测到此Trimeron阶的电子集体模式,因此仍然缺乏对Verwey过渡的动力学的理解。在这里,我们发现使用Terahertz Light发现Trimeron网络低能电子激发的光谱特征。通过与超短激光脉冲相干地驱动这些模式,我们揭示了它们的临界软化,因此证明了它们直接参与Verwey过渡。这些发现代表了磁铁矿中软模式的首次观察,并为其异国情调基态起源的合作机制提供了新的灯光。

The Verwey transition in magnetite (Fe$_3$O$_4$) is the first metal-insulator transition ever observed and involves a concomitant structural rearrangement and charge-orbital ordering. Due to the complex interplay of these intertwined degrees of freedom, a complete characterization of the low-temperature phase of magnetite and the mechanism driving the transition have long remained elusive. It was demonstrated in recent years that the fundamental building blocks of the charge-ordered structure are three-site small polarons called trimerons. However, electronic collective modes of this trimeron order have not been detected to date, and thus an understanding of the dynamics of the Verwey transition from an electronic point of view is still lacking. Here, we discover spectroscopic signatures of the low-energy electronic excitations of the trimeron network using terahertz light. By driving these modes coherently with an ultrashort laser pulse, we reveal their critical softening and hence demonstrate their direct involvement in the Verwey transition. These findings represent the first observation of soft modes in magnetite and shed new light on the cooperative mechanism at the origin of its exotic ground state.

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