生长后退火对Nd2−xCexCuO4中电荷和自旋激发的影响

K. Ishii, S. Asano, Masumi Ashida, M. Fujita, Biqiong Yu, M. Greven, J. Okamoto, D. Huang, J. Mizuki
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引用次数: 4

摘要

本文报道了Nd$_{2-x}$Ce$_x$CuO$_4$的Cu K-和L$_3$边缘共振非弹性x射线散射研究,重点研究了生长后退火效应。对于母化合物Nd$_2$CuO$_4$ ($x = 0$),在生长状态下观察到明显的电荷转移间隙,而电荷激发谱表明电子在退火状态下掺杂。这与在没有Ce掺杂的情况下,在足够高的电子浓度下,稀土(RE $_2$CuO$_4$)的退火薄膜和多晶样品可以变成金属和超导的观察结果是一致的。当Ce浓度为$x = 0.16$时,已知氧还原破坏了远程反铁磁秩序并诱导了超导性,我们发现非超导生长晶体和超导退火晶体的高能自旋激发几乎相同。这一发现与之前通过中子散射观察到的低能自旋激发的显著变化形成鲜明对比。
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Post-growth annealing effects on charge and spin excitations in Nd2−xCexCuO4
We report a Cu K- and L$_3$-edge resonant inelastic x-ray scattering study of charge and spin excitations of bulk Nd$_{2-x}$Ce$_x$CuO$_4$, with focus on post-growth annealing effects. For the parent compound Nd$_2$CuO$_4$ ($x = 0$), a clear charge-transfer gap is observed in the as-grown state, whereas the charge excitation spectra indicate that electrons are doped in the annealed state. This is consistent with the observation that annealed thin-film and polycrystalline samples of RE$_2$CuO$_4$ (RE = rare earth) can become metallic and superconducting at sufficiently high electron concentrations without Ce doping. For $x = 0.16$, a Ce concentration for which it is known that oxygen reduction destroys long-range antiferromagnetic order and induces superconductivity, we find that the high-energy spin excitations of non-superconducting as-grown and superconducting annealed crystals are nearly identical. This finding is in stark contrast to the significant changes in the low-energy spin excitations previously observed via neutron scattering.
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