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Theoretical approach to resonant inelastic x-ray scattering in iron-based superconductors at the energy scale of the superconducting gap

机译:铁基超导体在超导能隙能级上共振非弹性X射线散射的理论方法

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摘要

We develop a phenomenological theory to predict the characteristic features of the momentum-dependent scattering amplitude in resonant inelastic x-ray scattering (RIXS) at the energy scale of the superconducting gap in iron-based super-conductors. Taking into account all relevant orbital states as well as their specific content along the Fermi surface we evaluate the charge and spin dynamical structure factors for the compounds LaOFeAs and LiFeAs, based on tight-binding models which are fully consistent with recent angle-resolved photoemission spectroscopy (ARPES) data. We find a characteristic intensity redistribution between charge and spin dynamical structure factors which discriminates between sign-reversing and sign-preserving quasiparticle excitations. Consequently, our results show that RIXS spectra can distinguish between s± and s++ wave gap functions in the singlet pairing case. In addition, we find that an analogous intensity redistribution at small momenta can reveal the presence of a chiral p-wave triplet pairing.
机译:我们发展了一种现象学理论,以预测铁基超导体在超导间隙的能级上的共振非弹性X射线散射(RIXS)中依赖于动量的散射幅度的特征。考虑到所有相关的轨道状态及其沿费米表面的特定含量,我们基于紧密结合的模型对化合物LaOFeAs和LiFeAs的电荷和自旋动力学结构因子进行了评估,这些模型与最新的角度分辨光发射光谱完全一致(ARPES)数据。我们发现电荷和自旋动力学结构因子之间的特征强度重新分布,可以区分符号反转和符号保留准粒子激励。因此,我们的结果表明,在单线态配对情况下,RIXS光谱可以区分s±和s ++波隙函数。此外,我们发现在小的动量处类似的强度重新分布可以揭示手性p波三重态配对的存在。

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