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首页> 外文期刊>Journal of the Physical Society of Japan >Quantitative Comparison between Electronic Raman Scattering and Angle-Resolved Photoemission Spectra in Bi2Sr2CaCu2O8+delta Superconductors: Doping Dependence of Nodal and Antinodal Superconducting Gaps
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Quantitative Comparison between Electronic Raman Scattering and Angle-Resolved Photoemission Spectra in Bi2Sr2CaCu2O8+delta Superconductors: Doping Dependence of Nodal and Antinodal Superconducting Gaps

机译:Bi2SR2CACU2O8 + Delta超导体中电子拉曼散射和角度分辨光射光学光谱的定量比较:掺杂依赖性节点和抗型超导间隙的掺杂依赖性

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摘要

Both electronic Raman scattering (ERS) and angle-resolved photoemission spectra (ARPES) revealed two energy scales for the gap in different momentum spaces in the cuprates. However, the inter pietations were different, and the gap values were also different in two experiments. In order to clarify the origin of these discrepancies, we directly compared ERS and ARPES by calculating ERS from the experimental data of ARPES through the Kubo formula. The calculated ERS spectra were in good agreement with the experimental results except for the B-1g peak energies. The doping-dependent B-2g peak energy was well reproduced from a doping-independent d-wave gap deduced from ARPES, by assuming a particular spectral weight distribution along the Fermi surface. The B-1g peak energies could not be reproduced by the ARPES data. The difference between B-1g ERS and antinodal ARPES became larger with underdoping, which implies that the effect of the pseudogap is different in these two techniques.
机译:电子拉曼散射(ERS)和角度分辨的光扫描光谱(ARPES)揭示了铜酸盐中不同动量空间中间隙的两个能量尺度。 然而,米蛋白是不同的,两个实验中的间隙值也不同。 为了澄清这些差异的起源,我们通过通过Kubo公式计算ARPE的实验数据来直接比较了ERS和ARP。 除了B-1G峰值能量外,计算的ERS光谱与实验结果很好。 通过假设沿着Fermi表面的特定光谱重量分布,通过从ARPE推导的掺杂无关的D波间隙中再现掺杂依赖性B-2G峰值能量。 ARPES数据无法再现B-1G峰值能量。 B-1G eRS和抗阳极ARPE之间的差异随着较低的差异,这意味着在这两种技术中伪劣的涂覆的效果是不同的。

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