论文标题

通过X射线吸收光谱和谐振非弹性X射线散射研究的BA2CUO3+δ的晶体和磁性结构

Crystalline and magnetic structure of Ba2CuO3+δ investigated by x-ray absorption spectroscopy and resonant inelastic x-ray scattering

论文作者

Fumagalli, Roberto, Nag, Abhishek, Agrestini, Stefano, Garcia-Fernandez, Mirian, Walters, Andrew C., Betto, Davide, Brookes, Nicholas B., Braicovich, Lucio, Zhou, Ke-Jin, Ghiringhelli, Giacomo, Sala, Marco Moretti

论文摘要

由Ba $ _2 $ CUO $ _ {3+δ} $(BCO)的最近合成的动机,这是一种高温超导层,带有假定的$ d_ {3z^2-r^2} $地面状态对称性cu $ l_3 $ edge在多晶样品上。我们表明,BCO的XAS轮廓的特征是与不相等的Cu位点相关的两个峰,并且其RIXS响应具有与晶体场激发相关的单个尖峰。我们认为这些观察结果仅与先前提出的BCO晶体结构部分兼容。根据我们的光谱结果和先前发表的粉末衍射测量,我们提出了一种晶体结构,其特征在于沿$ c $轴的两个不相等的Cu位点,位于交替的平面上:名义上三价Cu(1)属于Cu-O链中非常短的Cu-O链,以及cu(2)的Cu(2),以及cu(2)cu(2)$ $$____________。我们还分析了RIXS光谱的低能区域,以估计BCO中磁相互作用的幅度,并发现平面最接近的邻居超级倒数超过120〜MEV,类似于其他分层库层。尽管这些结果不支持纯$ d_ {3z^2-r^2} $接地状态,但它们暗示着与纯$ d_ {x^2-y^2} $对称的普通准2D电子结构显着背离。

Motivated by the recent synthesis of Ba$_2$CuO$_{3+δ}$ (BCO), a high temperature superconducting cuprate with putative $d_{3z^2-r^2}$ ground state symmetry, we investigated its electronic structure by means of Cu $L_3$ x-ray absorption (XAS) and resonant inelastic x-ray scattering (RIXS) at the Cu $L_3$ edge on a polycrystalline sample. We show that the XAS profile of BCO is characterised by two peaks associated to inequivalent Cu sites, and that its RIXS response features a single, sharp peak associated to crystal-field excitations. We argue that these observations are only partially compatible with the previously proposed crystal structure of BCO. Based on our spectroscopic results and on previously published powder diffraction measurements, we propose a crystalline structure characterized by two inequivalent Cu sites located at alternated planes along the $c$ axis: nominally trivalent Cu(1) belonging to very short Cu-O chains, and divalent Cu(2) in the oxygen deficient CuO$_ {1.5}$ planes. We also analyze the low-energy region of the RIXS spectra to estimate the magnitude of the magnetic interactions in BCO and find that in-plane nearest neighbor superexchange exceeds 120~meV, similarly to that of other layered cuprates. Although these results do not support the pure $d_{3z^2-r^2}$ ground state scenario, they hint at a significant departure from the common quasi-2D electronic structure of superconducting cuprates of pure $d_{x^2-y^2}$ symmetry.

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