论文标题

基于CU的新型DZ2订单在YBA2CU3O7/锰矿界面上

Novel Cu-based dz2 order at a YBa2Cu3O7/ manganite interface

论文作者

Gaina, Roxana, Nicholson, Christopher W., Rumo, Maxime, Sarkar, Subhrangsu, Khmaladze, Jarji, Paris, Eugenio, Tseng, Yi, Zhang, Wenliang, Asmara, Teguh C., McNally, Daniel, Piamonteze, Cinthia, Weschke, Eugen, Schmitt, Thorsten, Monney, Claude, Bernhard, Christian

论文摘要

量子材料中几乎退化的顺序的相互作用会导致无数的新兴阶段。一个显着的情况是高-TC铜矿的超导性与涉及DX2-Y2轨道(CU-CDW)的CUO2平面中的超导性和不相差的电荷密度波之间的关系是极端兴趣的主题。通过施加大磁场,单轴压力或通过铜/锰岩多层中的界面耦合,可以实现这种CU-CDW的强度和相干性的强烈修改。但是,这种修饰不会改变主要的轨道特征。在这里,我们研究了具有共振弹性X射线散射(RIX)的铜/锰多层,并表明可以诱导一种新型的基于Cu的密度波顺序,而在Cuprates中尚未观察到。该顺序具有Q = 0.096的相互晶格单元(R.L.U.)的异常小波矢量,大约40 nm的大相关长度和主要的DZ2轨道特征,而不是典型的DX2-Y2特征。它的外观取决于锰矿的孔掺杂,这是控制界面电荷转移和轨道重建的关键参数。我们预计,在YBCO界面上观察以前未知类型的密度波顺序将允许对库酸酯中超导性和电荷顺序(CO)之间神秘关系的新观点进行新的视角。

The interplay of nearly degenerate orders in quantum materials can lead to a myriad of emergent phases. A prominent case is that of the high-Tc cuprates for which the relationship between superconductivity and a short-ranged, incommensurate charge density wave in the CuO2 planes involving the dx2-y2 orbitals (Cu-CDW) is a subject of great current interest. Strong modifications of the strength and coherence of this Cu-CDW have been achieved by applying large magnetic fields, uniaxial pressure, or via the interfacial coupling in cuprate/manganite multilayers. However, such modifications do not alter the dominant orbital character. Here we investigate cuprate/manganite multilayers with resonant inelastic X-ray scattering (RIXS) and show that a new kind of Cu-based density wave order can be induced that has not been previously observed in the cuprates. This order has an unusually small wave vector of Q = 0.096 reciprocal lattice units (r.l.u.), a large correlation length of about 40 nm, and a predominant dz2 orbital character, instead of the typical dx2-y2 character. Its appearance is determined by the hole doping of the manganite which is a key parameter controlling the interfacial charge transfer and orbital reconstruction. We anticipate that the observation of a previously unknown type of density wave order at the YBCO interface will allow for fresh perspectives on the enigmatic relation between superconductivity and charge order (CO) in the cuprates.

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