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Using RIXS to Uncover Elementary Charge and Spin Excitations

机译:使用rixs揭示小学费用和旋转激励

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Despite significant progress in resonant inelastic x-ray scattering (RIXS) experiments on cuprates at the Cu L -edge, a theoretical understanding of the cross section remains incomplete in terms of elementary excitations and the connection to both charge and spin structure factors. Here, we use state-of-the-art, unbiased numerical calculations to study the low-energy excitations probed by RIXS in the Hubbard model, relevant to the cuprates. The results highlight the importance of scattering geometry, in particular, both the incident and scattered x-ray photon polarization, and they demonstrate that on a qualitative level the RIXS spectral shape in the cross-polarized channel approximates that of the spin dynamical structure factor. However, in the parallel-polarized channel, the complexity of the RIXS process beyond a simple two-particle response complicates the analysis and demonstrates that approximations and expansions that attempt to relate RIXS to less complex correlation functions cannot reproduce the full diversity of RIXS spectral features.
机译:尽管在Cu L -Edge上的铜酸盐蛋白酶上的共振非弹性X射线散射(RIX)实验中,但对横截面的理论理解在基本激发和与电荷和旋转结构因子的连接方面保持不完整。在这里,我们使用最先进的,无偏别的数值计算来研究船桥模型中的rix探测的低能量激励,与铜替物蛋白相关。结果突出了散射几何形状的重要性,特别是入射和散射的X射线光子极化,并且它们证明了在分叉极化通道中的RIX谱形状近似于自旋动态结构因子。然而,在并行极化通道中,RIX处理超出简单的双粒子响应的复杂性使分析复杂化并演示了试图将rixs与更复杂的相关函数相关的近似和扩展不能再现RIX谱特征的全部分集。

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