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Coexisting pseudogap, charge-transfer-gap, and Mott-gap energy scales in the resonant inelastic x-ray scattering spectra of electron-doped cuprate superconductors

机译:电子掺杂的铜酸盐超导体的共振非弹性x射线散射光谱中同时存在的伪能隙,电荷转移能隙和Mott能隙

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摘要

We present a computation of Cu K-edge resonant inelastic x-ray scattering (RIXS) spectra for electron-doped cuprates, which includes coupling to bosonic fluctuations. Comparison with experiment over a wide range of energy and momentum transfers allows us to identify the signatures of three key normal-state energy scales: the pseudogap, charge-transfer gap, and Mott gap. The calculations involve a three-band Hubbard Hamiltonian based on Cu d_x~2_y~2 and O p_x, p_y orbitals, with a self-energy correction which arises due to spin and charge fluctuations. Our theory reproduces characteristic features, e.g., gap collapse, large spectral weight broadening, and spectral weight transfer as a function of doping, as seen in experiments.
机译:我们介绍了一种计算铜掺杂电子的铜酸盐的K K边缘共振非弹性X射线散射(RIXS)光谱的计算方法,其中包括耦合到玻色子涨落。与广泛的能量和动量传递实验进行比较,使我们能够确定三个关键的正常态能量尺度的特征:伪能隙,电荷传递能隙和莫特能隙。这些计算包括一个基于Cu d_x〜2_y〜2和O p_x,p_y轨道的三波段哈伯哈密顿量,由于自旋和电荷的波动会产生自能校正。我们的理论重现了特征特征,例如,缝隙塌陷,较大的光谱权重展宽以及作为掺杂的函数的光谱权重转移,如实验所示。

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