论文标题

无限层镍的合成和上限层对磁转运的影响

Synthesis of infinite-layer nickelates and influence of the capping-layer on magnetotransport

论文作者

Krieger, Guillaume, Raji, Aravind, Schlur, Laurent, Versini, Gilles, Bouillet, Corinne, Lenertz, Marc, Robert, Jérôme, Gloter, Alexandre, Viart, Nathalie, Preziosi, Daniele

论文摘要

鉴于Infinite-Layer镍盐和丘陵酸盐之间的类比,基于镍化合物的零耐药性状态最近发现了零耐药性状态。然而,尽管有一些正式的价和晶体对称性类比,但无限层镍的电子特性除其他特性外,具有独特的ND5D-NI3D杂交的原始会计。这将无限层镍表示为新的氧化物超导体,应自行考虑。在这里,我们报告了具有和没有SRTIO3上限层合成的ND1-XSRXNIO2(X = 0、0.05和0.2)薄膜,显示出非常光滑且渐变的表面形态。角度依赖性各向异性磁化磁场测量测量用磁场进行的磁场对样品表面旋转或平面外进行,从而提供了有关未掺杂的SRTIO3封型和无盖样品的磁性特性的重要信息。结果指出,上限层在控制各向异性磁倍率特性的大小和各向异性中的关键作用。我们从ND-NI杂交与ND-4F和ND-5D状态之间的原子内交换耦合之间的综合作用来讨论这种控制,后者实质上是有助于(Magneto)运输的。进一步研究预见,封盖层对无磁稀土的无限层镍盐的影响。

The recent discovery of a zero-resistance state in nickel-based compounds has generated a re-excitement about the long-standing problem in condensed matter of high-critical-temperature superconductivity, in light of the analogies between infinite-layer nickelates and cuprates. However, despite some formal valence and crystal symmetry analogies, the electronic properties of infinite-layer nickelates are remarkably original accounting, among other properties, of a unique Nd5d-Ni3d hybridization. This designates infinite-layer nickelates as a new class of oxide superconductors which should be considered on their own. Here we report about Nd1-xSrxNiO2 (x = 0, 0.05 and 0.2) thin films synthesized with and without a SrTiO3 capping-layer, showing very smooth and step-terraced surface morphologies. Angle-dependent anisotropic magnetoresistance measurements performed with a magnetic field rotating in-plane or out-of-plane with respect to the sample surface, rendered important information about the magnetic properties of undoped SrTiO3-capped and uncapped samples. The results point at a key role of the capping-layer in controlling the magnitude and the anisotropy of the anisotropic magnetoresistance properties. We discuss this control in terms of a combined effect between the Nd-Ni hybridization and an intra-atomic exchange coupling between the Nd-4f and Nd-5d states, the latter essentially contributing to the (magneto)transport. Further studies foresee the influence of the capping layer on infinite-layer nickelates with no magnetic rare-earth.

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