论文标题

在丘比特莫特绝缘子中发现电子晶体

Discovery of an electronic crystal in a cuprate Mott insulator

论文作者

Kang, Mingu, Zhang, Charles, Schierle, Enrico, McCoy, Stephen, Li, Jiarui, Sutarto, Ronny, He, Feizhou, Suter, Andreas, Prokscha, Thomas, Salman, Zaher, Weschke, Eugen, Cybart, Shane, Wei, John Y. T., Comin, Riccardo

论文摘要

氧化铜高温超导体普遍表现出多种形式的电子阶相,它们破坏了CuO2平面的天然平移对称性。这些顺序与超导基态之间的相互作用,以及它们通过掺杂mott绝缘子而产生的相互作用对于解释高温超导性的机制至关重要。多年来,发现各种形式的电子液晶相,包括电荷/自旋条纹和不稳定的电荷密度波(CDW),它们从不足的铜层中出现了相关的金属基态。早期的理论研究还预测了在非常轻轻的cuO2平面极限的绝缘极限中出现了库仑填充的“电荷晶体”相。在这里,我们使用谐振X射线散射,电子传输和MUON自旋旋转测量测量值以完全解析电子和磁接地状态,并在来自RBA2CU3O7-D家族(RBCO; R:R:Y:Y或Rare Earth)中以非常轻微的孔掺杂的库层中的充电顺序签名。来自RBCO膜的X射线散射数据表明,平移对称性的破坏比以前更为普遍,延伸到Mott限制。该电荷晶体状态的有序向量线性连接到不足的RBCO的电荷密度波,这表明随着孔掺杂的增加,前相是后者的前体。最重要的是,RBCO中的电荷和自旋顺序的共存表明,这种电子对称性状态对于非常轻微的型状态中的CuO2平面是共同的。这些发现弥合了莫特绝缘状态与压倒力的金属状态之间的差距,并强调了所有库酸酯中库仑填充的电子相分离的重要作用。

Copper oxide high temperature superconductors universally exhibit multiple forms of electronically ordered phases that break the native translational symmetry of the CuO2 planes. The interplay between these orders and the superconducting ground state, as well as how they arise through doping a Mott insulator, is essential to decode the mechanisms of high-temperature superconductivity. Over the years, various forms of electronic liquid crystal phases including charge/spin stripes and incommensurate charge-density-waves (CDWs) were found to emerge out of a correlated metallic ground state in underdoped cuprates. Early theoretical studies also predicted the emergence of a Coulomb-frustrated 'charge crystal' phase in the very lightly-doped, insulating limit of the CuO2 planes. Here, we use resonant X-ray scattering, electron transport, and muon spin rotation measurements to fully resolve the electronic and magnetic ground state and search for signatures of charge order in very lightly hole-doped cuprates from the RBa2Cu3O7-d family (RBCO; R: Y or rare earth). X-ray scattering data from RBCO films reveal a breaking of translational symmetry more pervasive than was previously known, extending down to the Mott limit. The ordering vector of this charge crystal state is linearly connected to the charge-density-waves of underdoped RBCO, suggesting that the former phase is a precursor to the latter as hole doping is increased. Most importantly, the coexistence of charge and spin order in RBCO suggests that this electronic symmetry-breaking state is common to the CuO2 planes in the very lightly-doped regime. These findings bridge the gap between the Mott insulating state and the underdoped metallic state and underscore the prominent role of Coulomb-frustrated electronic phase separation among all cuprates.

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