论文标题

相关金属中共振非弹性X射线散射的描述

Description of resonant inelastic x-ray scattering in correlated metals

论文作者

Gilmore, Keith, Pelliciari, Jonathan, Huang, Yaobo, Kas, Joshua J., Dantz, Marcus, Strocov, Vladimir N., Kasahara, Shigeru, Matsuda, Yuji, Das, Tanmoy, Shibauchi, Takasada, Schmitt, Thorsten

论文摘要

为了充分利用共振非弹性X射线散射(RIX)的潜在和多功能性,必须通过计算来解释不同的RIX贡献的能力,包括对动量转移的依赖,从第一原理,对相关材料的第一原理。为了实现这一目标,我们提出了新的方法,用于以公正的方式计算相关金属的完整RIX响应。通过比较在fe l $ _3 $ _3 $的吸收率的大部分时间内调节事件光子能量的测量和计算,该示例的吸收共振是物质bafe $ _2 $ as $ _2 $,我们表明,rixs在bafe $ _2 $ as $ _2 $中的rixs响应由$ _2 $主导,由直接频道贡献占主导地位,其中包括RAMAN类别,该响应是在下面的,该响应是在下面的,该响应是在下面的,我们的threslite ase sey sey sey the there sey sey the threpenter a以下是一定的,我们构成了threSER,该响应是一定的。扩展。计算最初是在第一原理伯特盐盐框架内执行的,然后我们通过卷积通过有效的中等状态激发的有效光谱函数来显着改进。我们通过采用绿色功能的累积扩展并执行电子系统对电子系统对中间状态激发扰动的响应的响应来构建该光谱函数。重要的是,这使我们能够评估第一原理的间接RIX响应,这是晶体结构的完整周期性以及依赖动量传递的。

To fully capitalize on the potential and versatility of resonant inelastic x-ray scattering (RIXS), it is essential to develop the capability to interpret different RIXS contributions through calculations, including the dependence on momentum transfer, from first-principles for correlated materials. Toward that objective, we present new methodology for calculating the full RIXS response of a correlated metal in an unbiased fashion. Through comparison of measurements and calculations that tune the incident photon energy over a wide portion of the Fe L$_3$ absorption resonance of the example material BaFe$_2$As$_2$, we show that the RIXS response in BaFe$_2$As$_2$ is dominated by the direct channel contribution, including the Raman-like response below threshold, which we explain as a consequence of the finite core-hole lifetime broadening. Calculations are initially performed within the first-principles Bethe-Salpeter framework, which we then significantly improve by convolution with an effective spectral function for the intermediate-state excitation. We construct this spectral function, also from first-principles, by employing the cumulant expansion of the Green's function and performing a real-time time dependent density functional theory calculation of the response of the electronic system to the perturbation of the intermediate-state excitation. Importantly, this allows us to evaluate the indirect RIXS response from first-principles, accounting for the full periodicity of the crystal structure and with dependence on the momentum transfer.

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