Institut für Theoretische Physik, Technische Universität Dresden, 01062 Dresden, Germany.
Phys Rev Lett. 2012 Oct 5;109(14):147201. doi: 10.1103/PhysRevLett.109.147201. Epub 2012 Oct 1.
Hourglass-shaped magnetic excitation spectra have been detected in a variety of doped transition-metal oxides with stripelike charge order. Compared to the predictions of spin-wave theory for perfect stripes, these spectra display a different intensity distribution and anomalous broadening. Here we show, based on a comprehensive modeling for La5/3Sr1/3CoO4, how quenched disorder in the charge sector causes frustration, and consequently cluster-glass behavior at low temperatures, in the spin sector. This spin-glass physics, which is insensitive to the detailed nature of the charge disorder, but sensitive to the relative strength of the magnetic interstripe coupling, ultimately determines the distribution of magnetic spectral weight: The excitation spectrum, calculated using spin waves in finite disordered systems, is found to match in detail the observed hour-glass spectrum.
在具有条状电荷有序的各种掺杂过渡金属氧化物中,已经检测到沙漏形的磁激发谱。与完美条纹的自旋波理论预测相比,这些谱显示出不同的强度分布和异常增宽。在这里,我们基于对 La5/3Sr1/3CoO4 的综合建模,展示了在电荷区的淬火无序如何导致在自旋区中产生低温下的团簇玻璃行为的挫折。这种自旋玻璃物理对电荷无序的细节性质不敏感,但对磁条纹间耦合的相对强度敏感,最终决定了磁谱权重的分布:在有限无序系统中使用自旋波计算得到的激发谱,与观察到的沙漏谱细节匹配。