论文标题

SR2IRO4中电荷和自旋轨道相互作用的应变工程

Strain-engineering of the charge and spin-orbital interactions in Sr2IrO4

论文作者

Paris, Eugenio, Tseng, Yi, Pärschke, Ekaterina M., Zhang, Wenliang, Upton, Mary H., Efimenko, Anna, Rolfs, Katharina, McNally, Daniel E., Maurel, Laura, Naamneh, Muntaser, Caputo, Marco, Strocov, Vladimir N., Wang, Zhiming, Casa, Diego, Schneider, Christof W., Pomjakushina, Ekaterina, Wohlfeld, Krzysztof, Radovic, Milan, Schmitt, Thorsten

论文摘要

在高自旋轨道耦合的SR2IRO4中,基态对局部晶格结构细节的高灵敏度通过诱导局部晶格扭曲来操纵功能性能的潜力很大。我们使用外延应变来修改SR2IRO4中的IR-O键几何形状,并在金属和配体部位执行动量依赖性的谐振X射线散射(RIX),以揭示低能基本激发的响应。我们观察到,用于抗拉伸的SR2IRO4膜的伪波分散沿[H,0]方向显示出很大的软化,而沿[H,H]方向则显示出硬化。这种演变揭示了由应变驱动的跨界跨各向异性与各向同性相互作用之间的磁相互作用的重新归一化。此外,我们检测到分散电子孔对激发激发,在压缩(拉伸)应变时转移到较低(较高)的能量,表现出电荷间隙尺寸的减小(增加)。这种行为表明了SR2IRO4中电荷激发与晶格扭曲之间的紧密耦合,该耦合源自T2G轨道之间的修改后跳跃元素。我们的工作强调了晶格自由度在确定SR2IRO4的伪蛋白和电荷激发方面所起的核心作用,并在存在高旋转轨道耦合的情况下提供了有价值的信息,以控制复杂氧化物的基态状态。

In the high spin-orbit coupled Sr2IrO4, the high sensitivity of the ground state to the details of the local lattice structure shows a large potential for the manipulation of the functional properties by inducing local lattice distortions. We use epitaxial strain to modify the Ir-O bond geometry in Sr2IrO4 and perform momentum-dependent Resonant Inelastic X-ray Scattering (RIXS) at the metal and at the ligand sites to unveil the response of the low energy elementary excitations. We observe that the pseudospin-wave dispersion for tensile-strained Sr2IrO4 films displays large softening along the [h,0] direction, while along the [h,h] direction it shows hardening. This evolution reveals a renormalization of the magnetic interactions caused by a strain-driven crossover from anisotropic to isotropic interactions between the magnetic moments. Moreover, we detect dispersive electron-hole pair excitations which shift to lower (higher) energies upon compressive (tensile) strain, manifesting a reduction (increase) in the size of the charge gap. This behavior shows an intimate coupling between charge excitations and lattice distortions in Sr2IrO4, originating from the modified hopping elements between the t2g orbitals. Our work highlights the central role played by the lattice degrees of freedom in determining both the pseudospin and charge excitations of Sr2IrO4 and provides valuable information towards the control of the ground state of complex oxides in the presence of high spin-orbit coupling.

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