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在 Bi2Sr(2-x)La(x)CuO6 的欠掺杂区域中电子-声子谱密度的演化。

Evolution of electron-boson spectral density in the underdoped region of Bi2Sr(2-x)La(x)CuO6.

机构信息

Department of Physics, Sungkyunkwan University, Suwon, Gyeonggi-do, Republic of Korea.

出版信息

J Phys Condens Matter. 2013 Apr 24;25(16):165703. doi: 10.1088/0953-8984/25/16/165703. Epub 2013 Apr 3.

Abstract

We use a maximum entropy technique to obtain the electron-boson spectral density from optical scattering rate data across the underdoped region of the Bi2Sr(2-x)La(x)CuO6 (Bi-2201) phase diagram. Our method involves a generalization of previous work which explicitly includes finite temperature and the opening of a pseudogap which modifies the electronic structure. We find that the mass enhancement factor λ associated with the electron-boson spectral density increases monotonically with reduced doping and closer proximity to the Mott antiferromagnetic insulating state. This observation is consistent with increased coupling to the spin fluctuations. At the same time the system has reduced metallicity because of increased pseudogap effects which we model with a reduced effective density of states around the Fermi energy with the range of the modifications in energy set by the pseudogap scale.

摘要

我们使用最大熵技术从 Bi2Sr(2-x)La(x)CuO6(Bi-2201)相图的欠掺杂区域的光学散射率数据中获得电子-声子谱密度。我们的方法涉及对先前工作的推广,该方法明确包括有限温度和赝能隙的打开,这会改变电子结构。我们发现,与电子-声子谱密度相关的质量增强因子 λ随着掺杂的减少和与莫特反铁磁绝缘态的接近而单调增加。这一观察结果与增加与自旋涨落的耦合一致。同时,由于赝能隙效应的增加,系统的金属性降低,我们用费米能附近的有效态密度降低来模拟赝能隙效应,能量的变化范围由赝能隙尺度设定。

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