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铜氧化物中的赝能隙在循环电流有序态。

Pseudogap in cuprates in the loop-current ordered state.

机构信息

Department of Physics, University of California, 900 University Ave, Riverside, CA 92521, USA.

出版信息

J Phys Condens Matter. 2014 Dec 17;26(50):505701. doi: 10.1088/0953-8984/26/50/505701. Epub 2014 Nov 19.

Abstract

Scanning tunneling microscopy (STM) has revealed that the magnitude of the pseudo-gap in under-doped cuprates varies spatially and is correlated with disorder. The loop-current order, characterized by the anapole vector Ω, discovered in under-doped cuprates occurs in the same region of the temperature and doping as the pseudo gap observed in STM and ARPES experiments. Since translational symmetry remains unchanged in the pure limit, no gap occurs at the chemical potential. On the other hand for disorder coupling linearly to the different possible orientations of Ω, there can only be a finite temperature dependent static correlation length for the loop-current state at any temperature. This leads to formation of domains of the ordered state with different orientation and magnitude of Ω in each. For the characteristic size of the domains much larger than the Fermi-vectors [Formula: see text], the boundary of the domains leads to forward scattering of the Fermions. Such forward scattering is shown to push states near the chemical potential to energies both above and below it leading to a pseudo-gap with an angular dependence which is maximum in the [Formula: see text] directions because the single-particle energies are degenerate in these directions for all domains. The magnitude of the average gap systematically increases with the square of the average loop order parameter measured by polarized neutron scattering. This result is tested. A unique result of the gap due to forward scattering is the lack of a bump in the density of states at the 'edge' of the pseudo-gap so that the depletion of states near the chemical potential is recovered only in integration up to the edge of the band. This is also in agreement with a variety of experiments. Some predictions for further experiments are provided. Due to the finite correlation length, low frequency excitations are expected at long wavelength at all temperatures in the 'ordered' phase. Such fluctuations motionally average over the shifts in frequencies of local probes such as NMR and muon resonance expected for a truly static order.

摘要

扫描隧道显微镜(STM)揭示了欠掺杂 cuprates 中的赝能隙的大小在空间上是变化的,并且与无序有关。在欠掺杂 cuprates 中发现的环电流有序,其特征在于反磁矢势 Ω,出现在与 STM 和 ARPES 实验中观察到的赝能隙相同的温度和掺杂区域。由于在纯极限下平移对称性保持不变,在化学势处没有能隙。另一方面,对于与 Ω 的不同可能取向线性耦合的无序,在任何温度下,环电流态只有有限的与温度相关的静态相关长度。这导致有序态的畴的形成,在每个畴中具有不同的取向和大小的 Ω。对于畴的特征尺寸远大于费米矢量 [Formula: see text],畴的边界导致费米子的前向散射。这种前向散射表明,将化学势附近的状态推向其上方和下方的能量,导致具有角度依赖性的赝能隙,在 [Formula: see text] 方向上最大,因为在这些方向上所有畴的单粒子能量都是简并的。平均间隙的大小与极化中子散射测量的平均环序参数的平方成正比系统地增加。这个结果是经过检验的。前向散射引起的间隙的一个独特结果是,在赝能隙的“边缘”处,态密度没有凸起,因此,只有在积分到能带边缘时,化学势附近的态密度才会恢复。这也与各种实验结果一致。还提供了对进一步实验的一些预测。由于存在有限的相关长度,在“有序”相中,所有温度下的低频激发都预计在长波长处存在。这种波动在局部探针(如 NMR 和 muon 共振)的频率移动中平均化,对于真正的静态有序,这些探针的频率预计会发生移动。

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