Dynamical spin susceptibility in La2CuO4 studied by resonant inelastic x-ray scattering

H. Robarts, M. García-Fernández, J. Li, A. Nag, A. Walters, N. E. Headings, S. Hayden, K. Zhou
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引用次数: 4

Abstract

Resonant inelastic X-ray scattering (RIXS) is a powerful probe of elementary excitations in solids. It is now widely applied to study magnetic excitations. However, its complex cross-section means that RIXS has been more difficult to interpret than inelastic neutron scattering (INS). Here we report high-resolution RIXS measurements of magnetic excitations of La2CuO4, the antiferromagnetic parent of one system of high-temperature superconductors. At high energies (~2 eV), the RIXS spectra show angular-dependent dd orbital excitations which are found to be in good agreement with single-site multiplet calculations. At lower energies (<0.3 eV), we show that the wavevector-dependent RIXS intensities are proportional to the product of the single-ion spin-flip cross section and the dynamical susceptibility of the spin-wave excitations. When the spin-flip crosssection is dividing out, the RIXS magnon intensities show a remarkable resemblance to INS data. Our results show that RIXS is a quantitative probe the dynamical spin susceptibility in cuprate and therefore should be used for quantitative investigation of other correlated electron materials.
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用共振非弹性x射线散射研究La2CuO4的动态自旋磁化率
共振非弹性x射线散射(RIXS)是固体中基本激发的有力探测手段。它现在被广泛应用于研究磁激励。然而,其复杂的截面意味着RIXS比非弹性中子散射(INS)更难解释。在这里,我们报告了高分辨率的RIXS测量La2CuO4的磁激发,La2CuO4是一个高温超导体系统的反铁磁母。在高能量(~ 2ev)下,RIXS光谱显示出角相关的dd轨道激发,这与单点多重星的计算结果很好地吻合。在较低的能量(<0.3 eV)下,我们发现与波矢量相关的RIXS强度与单离子自旋翻转截面和自旋波激发的动态磁化率的乘积成正比。当自旋翻转截面分开时,RIXS的磁振子强度显示出与INS数据的惊人相似。结果表明,RIXS是铜中动态自旋磁化率的定量探针,因此可以用于其他相关电子材料的定量研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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