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NMR 研究表明 HgBa2CuO4+δ 中尖氧位不存在静态循环电流磁性。

Absence of static loop-current magnetism at the apical oxygen site in HgBa2CuO4+δ from NMR.

机构信息

Department of Physics and Astronomy, Northwestern University, Evanston, Illinois 60208, USA.

出版信息

Phys Rev Lett. 2013 Nov 1;111(18):187003. doi: 10.1103/PhysRevLett.111.187003.

Abstract

The simple structure of HgBa(2)CuO(4+δ) (Hg1201) is ideal among cuprates for study of the pseudogap phase as a broken symmetry state. We have performed (17)O nuclear magnetic resonance on an underdoped Hg1201 crystal with a transition temperature of 74 K to look for circulating loop currents proposed theoretically and inferred from neutron scattering. The narrow spectra preclude static local fields in the pseudogap phase at the apical site, suggesting that the moments observed with neutrons are fluctuating. The nuclear magnetic resonance frequency shifts are consistent with a dipolar field from the Cu(2+) site.

摘要

HgBa(2)CuO(4+δ) (Hg1201) 的简单结构在铜酸盐中是研究赝能隙相的理想选择,因为它是一种对称破缺的状态。我们对一个过渡温度为 74 K 的欠掺杂 Hg1201 晶体进行了 (17)O 核磁共振研究,以寻找理论上提出并从中子散射推断出的循环环电流。窄的谱线排除了在顶角位置赝能隙相中存在静态局域场的可能性,这表明中子观察到的磁矩是波动的。核磁共振频率位移与来自 Cu(2+) 位的偶极场一致。

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