论文标题
相关的多播种金属CA3RU2O7中的旋转和电荷激发
Spin and charge excitations in the correlated multiband metal Ca3Ru2O7
论文作者
论文摘要
我们使用RU $ L_3 $ - 边缘谐振非弹性X射线散射(RIX)来研究CA $ _3 $ RU $ _2 $ _2 $ o $ $ _7 $的全部激发,从MEV尺度磁力动力学到EV规模的互段过渡。这款双层$ 4D $ - 电子相关的金属表达了丰富的相图,在56 K以下显示长距离磁性顺序,然后在48 K处出现伴随的结构,磁性和电子过渡。在低温阶段,我们观察到磁性激发,带有$ \ sim $ \ sim $ 30 mev的带宽,并与$ \ sim $ 8 mev conterron Complosity Conterron Complosit中心,并在sim seys中心相同。可以使用Heisenberg Hamiltonian为BiLayer $ \ MATHRM {S} = 1 $系统进行单个离子各向异性术语进行建模。以较高的能源损失,$ dd $ type激发表明在存在巡回电子的情况下进行了沉重的阻尼,从而产生了$ t_ {2g} $和$ e_g $ bands之间出现的类似荧光的信号。同时,我们观察到源自本地化的$ t_ {2g} $激发的共振,类似于结构相关的莫特 - 绝缘子ca $ _2 $ ruo $ _4 $。但是,尽管Ca $ _2 $ ruo $ _4 $显示出尖锐的单独的旋转轨道激发和hund的驱动的旋转状态过渡,但我们在这里仅确定一个单个广泛的不对称功能。这些结果表明,即使在巡回电子的存在下,激发量强烈混合在一起,ca $ _3 $ _2 $ o $ $ _7 $中相关物理学的相关物理基础是相关物理的基础。
We use Ru $L_3$-edge resonant inelastic x-ray scattering (RIXS) to study the full range of excitations in Ca$_3$Ru$_2$O$_7$ from meV-scale magnetic dynamics through to the eV-scale interband transitions. This bilayer $4d$-electron correlated metal expresses a rich phase diagram, displaying long range magnetic order below 56 K followed by a concomitant structural, magnetic and electronic transition at 48 K. In the low temperature phase we observe a magnetic excitation with a bandwidth of $\sim$30 meV and a gap of $\sim$8 meV at the zone center, in excellent agreement with inelastic neutron scattering data. The dispersion can be modeled using a Heisenberg Hamiltonian for a bilayer $\mathrm{S}=1$ system with single ion anisotropy terms. At a higher energy loss, $dd$-type excitations show heavy damping in the presence of itinerant electrons, giving rise to a fluorescence-like signal appearing between the $t_{2g}$ and $e_g$ bands. At the same time, we observe a resonance originating from localized $t_{2g}$ excitations, in analogy to the structurally related Mott-insulator Ca$_2$RuO$_4$. But whereas Ca$_2$RuO$_4$ shows sharp separate spin-orbit excitations and Hund's-rule driven spin-state transitions, here we identify only a single broad asymmetric feature. These results indicate that local intra-ionic interactions underlie the correlated physics in Ca$_3$Ru$_2$O$_7$, even as the excitations become strongly mixed in the presence of itinerant electrons.